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1.
Int J Mol Sci ; 25(8)2024 Apr 11.
Article in English | MEDLINE | ID: mdl-38673804

ABSTRACT

Throughout its lifecycle, Entamoeba histolytica encounters a variety of stressful conditions. This parasite possesses Heat Shock Response Elements (HSEs) which are crucial for regulating the expression of various genes, aiding in its adaptation and survival. These HSEs are regulated by Heat Shock Transcription Factors (EhHSTFs). Our research has identified seven such factors in the parasite, designated as EhHSTF1 through to EhHSTF7. Significantly, under heat shock conditions and in the presence of the antiamoebic compound emetine, EhHSTF5, EhHSTF6, and EhHSTF7 show overexpression, highlighting their essential role in gene response to these stressors. Currently, only EhHSTF7 has been confirmed to recognize the HSE as a promoter of the EhPgp5 gene (HSE_EhPgp5), leaving the binding potential of the other EhHSTFs to HSEs yet to be explored. Consequently, our study aimed to examine, both in vitro and in silico, the oligomerization, and binding capabilities of the recombinant EhHSTF5 protein (rEhHSTF5) to HSE_EhPgp5. The in vitro results indicate that the oligomerization of rEhHSTF5 is concentration-dependent, with its dimeric conformation showing a higher affinity for HSE_EhPgp5 than its monomeric state. In silico analysis suggests that the alpha 3 α-helix (α3-helix) of the DNA-binding domain (DBD5) of EhHSTF5 is crucial in binding to the major groove of HSE, primarily through hydrogen bonding and salt-bridge interactions. In summary, our results highlight the importance of oligomerization in enhancing the affinity of rEhHSTF5 for HSE_EhPgp5 and demonstrate its ability to specifically recognize structural motifs within HSE_EhPgp5. These insights significantly contribute to our understanding of one of the potential molecular mechanisms employed by this parasite to efficiently respond to various stressors, thereby enabling successful adaptation and survival within its host environment.


Subject(s)
ATP Binding Cassette Transporter, Subfamily B, Member 1 , Entamoeba histolytica , Promoter Regions, Genetic , Protozoan Proteins , Binding Sites , Computer Simulation , Entamoeba histolytica/genetics , Entamoeba histolytica/metabolism , Heat-Shock Response/genetics , Protein Binding , Protein Multimerization , Protozoan Proteins/genetics , Protozoan Proteins/metabolism , Protozoan Proteins/chemistry , Response Elements , Transcription Factors/metabolism , Transcription Factors/genetics , Transcription Factors/chemistry , ATP Binding Cassette Transporter, Subfamily B, Member 1/genetics , ATP Binding Cassette Transporter, Subfamily B, Member 1/metabolism
2.
Sci Rep ; 14(1): 6635, 2024 03 19.
Article in English | MEDLINE | ID: mdl-38503871

ABSTRACT

Entamoeba moshkovskii, recently known as a possible pathogenic amoeba, and the non-pathogenic Entamoeba dispar are morphologically indistinguishable by microscopy. Although PCR was used for differential diagnosis, gel electrophoresis is labor-intensive, time-consuming, and exposed to hazardous elements. In this study, nucleic acid lateral flow immunoassay (NALFIA) was developed to detect E. moshkovskii and E. dispar by post-PCR amplicon analysis. E. moshkovskii primers were labeled with digoxigenin and biotin whereas primers of E. dispar were lebeled with FITC and digoxigenin. The gold nanoparticles were labeled with antibodies corresponding to particular labeling. Based on the established assay, NALFIA could detect as low as 975 fg of E. moshkovskii target DNA (982 parasites or 196 parasites/microliter), and 487.5 fg of E. dispar target DNA (444 parasites or 89 parasites/microliter) without cross-reactivity to other tested intestinal organisms. After testing 91 stool samples, NALFIA was able to detect seven E. moshkovskii (87.5% sensitivity and 100% specificity) and eight E. dispar samples (66.7% sensitivity and 100% specificity) compared to real-time PCR. Interestingly, it detected three mixed infections as real-time PCR. Therefore, it can be a rapid, safe, and effective method for the detection of the emerging pathogens E. moshkovskii and E. dispar in stool samples.


Subject(s)
Amoeba , Entamoeba histolytica , Entamoeba , Entamoebiasis , Metal Nanoparticles , Nucleic Acids , Humans , Entamoeba/genetics , Entamoebiasis/diagnosis , Entamoebiasis/parasitology , Amoeba/genetics , Digoxigenin , Gold , DNA, Protozoan/genetics , DNA, Protozoan/analysis , Real-Time Polymerase Chain Reaction , Immunoassay , Feces/chemistry , Entamoeba histolytica/genetics
3.
Trop Doct ; 54(2): 139-146, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38311979

ABSTRACT

Permanent stains such as trichrome have better sensitivity but are time-consuming and the fixative includes toxic mercuric chloride. Thus, a newer modification was tested and found to be a superior, faster and safer staining technique for intestinal parasitic detection. Our study lasted 9 months and a single stool sample was collected from each enrolled patient. We evaluated classical trichrome (T1 - using Schaudinn fixative) with newer modifications, which involved different fixatives with mordant combinations (T2 - acetic acid + hydrated aluminium sulphate, T3 - citric acid + copper sulphate hydrate). Conventional PCR targeting Entamoeba histolytica, Giardia lamblia and Cryptosporidium spp. was taken as the reference. Out of 175 stool samples, 25.1% protozoa were identified by wet mount, 24% by each T1 and T2, 25.7% by T3. Statistically, T3 and T2 had higher sensitivity as compared to T1 and wet mount when PCR was used as reference.


Subject(s)
Azo Compounds , Cryptosporidiosis , Cryptosporidium , Entamoeba histolytica , Eosine Yellowish-(YS) , Intestinal Diseases, Parasitic , Methyl Green , Parasites , Animals , Humans , Fixatives , Feces/parasitology , Intestinal Diseases, Parasitic/parasitology , Entamoeba histolytica/genetics , Coloring Agents
4.
Genes (Basel) ; 15(2)2024 Feb 02.
Article in English | MEDLINE | ID: mdl-38397191

ABSTRACT

Entamoeba histolytica, the causative agent of amebiasis, is the third leading cause of death among parasitic diseases globally. Its life cycle includes encystation, which has been mostly studied in Entamoeba invadens, responsible for reptilian amebiasis. However, the molecular mechanisms underlying this process are not fully understood. Therefore, we focused on the identification and characterization of Myb proteins, which regulate the expression of encystation-related genes in various protozoan parasites. Through bioinformatic analysis, we identified 48 genes in E. invadens encoding MYB-domain-containing proteins. These were classified into single-repeat 1R (20), 2R-MYB proteins (27), and one 4R-MYB protein. The in-silico analysis suggests that these proteins are multifunctional, participating in transcriptional regulation, chromatin remodeling, telomere maintenance, and splicing. Transcriptomic data analysis revealed expression signatures of eimyb genes, suggesting a potential orchestration in the regulation of early and late encystation-excystation genes. Furthermore, we identified probable target genes associated with reproduction, the meiotic cell cycle, ubiquitin-dependent protein catabolism, and endosomal transport. In conclusion, our findings suggest that E. invadens Myb proteins regulate stage-specific proteins and a wide array of cellular processes. This study provides a foundation for further exploration of the molecular mechanisms governing encystation and unveils potential targets for therapeutic intervention in amebiasis.


Subject(s)
Amebiasis , Entamoeba histolytica , Entamoeba , Humans , Entamoeba/genetics , Entamoeba/metabolism , Entamoeba histolytica/genetics , Gene Expression Profiling , Gene Expression Regulation
5.
Acta Parasitol ; 69(1): 426-438, 2024 Mar.
Article in English | MEDLINE | ID: mdl-38172465

ABSTRACT

PURPOSE: Entamoeba histolytica is one of the death-causing parasites in the world. Study on its lipid composition revealed that it is predominated by phosphatidylcholine and phosphatidylethanolamine. Further study revealed that its phosphorylated metabolites might be produced by the Kennedy pathway. Here, we would like to report on the characterizations of enzymes from this pathway that would provide information for the design of novel inhibitors against these enzymes in future. METHODOLOGY: E. histolytica HM-1:IMSS genomic DNA was isolated and two putative choline/ethanolamine kinase genes (EhCK1 and EhCK2) were cloned and expressed from Escherichia coli BL21 strain. Enzymatic characterizations were further carried out on the purified enzymes. RESULTS: EhCK1 and EhCK2 were identified from E. histolytica genome. The deduced amino acid sequences were more identical to its homologues in human (35-48%) than other organisms. The proteins were clustered as ethanolamine kinase in the constructed phylogeny tree. Sequence analysis showed that they possessed all the conserved motifs in choline kinase family: ATP-binding loop, Brenner's phosphotransferase motif, and choline kinase motif. Here, the open reading frames were cloned, expressed, and purified to apparent homogeneity. EhCK1 showed activity with choline but not ethanolamine. The biochemical characterization showed that it had a Vmax of 1.9 ± 0.1 µmol/min/mg. Its Km for choline and ATP was 203 ± 26 µM and 3.1 ± 0.4 mM, respectively. In contrast, EhCK2 enzymatic activity was only detected when Mn2+ was used as the co-factor instead of Mg2+ like other choline/ethanolamine kinases. Highly sensitive and specific antibody against EhCK1 was developed and used to confirm the endogenous EhCK1 expression using immunoblotting. CONCLUSIONS: With the understanding of EhC/EK importance in phospholipid metabolism and their unique characteristic, EhC/EK could be a potential target for future anti-amoebiasis study.


Subject(s)
Choline Kinase , Entamoeba histolytica , Phylogeny , Entamoeba histolytica/genetics , Entamoeba histolytica/enzymology , Choline Kinase/genetics , Choline Kinase/metabolism , Protozoan Proteins/genetics , Protozoan Proteins/metabolism , Protozoan Proteins/chemistry , Cloning, Molecular , Amino Acid Sequence , Escherichia coli/genetics , Phosphotransferases (Alcohol Group Acceptor)/genetics , Phosphotransferases (Alcohol Group Acceptor)/metabolism , Ethanolamines/metabolism , Choline/metabolism
6.
Int J Mol Sci ; 25(2)2024 Jan 21.
Article in English | MEDLINE | ID: mdl-38279319

ABSTRACT

Entamoeba histolytica (E. histolytica) exhibits a remarkable capacity to respond to thermal shock stress through a sophisticated genetic regulation mechanism. This process is carried out via Heat Shock Response Elements (HSEs), which are recognized by Heat Shock Transcription Factors (EhHSTFs), enabling fine and precise control of gene expression. Our study focused on screening for HSEs in the promoters of the E. histolytica genome, specifically analyzing six HSEs, including Ehpgp5, EhrabB1, EhrabB4, EhrabB5, Ehmlbp, and Ehhsp100. We discovered 2578 HSEs, with 1412 in promoters of hypothetical genes and 1166 in coding genes. We observed that a single promoter could contain anywhere from one to five HSEs. Gene ontology analysis revealed the presence of HSEs in essential genes for the amoeba, including cysteine proteinases, ribosomal genes, Myb family DNA-binding proteins, and Rab GTPases, among others. Complementarily, our molecular docking analyses indicate that these HSEs are potentially recognized by EhHSTF5, EhHSTF6, and EhHSTF7 factors in their trimeric conformation. These findings suggest that E. histolytica has the capability to regulate a wide range of critical genes via HSE-EhHSTFs, not only for thermal stress response but also for vital functions of the parasite. This is the first comprehensive study of HSEs in the genome of E. histolytica, significantly contributing to the understanding of its genetic regulation and highlighting the complexity and precision of this mechanism in the parasite's survival.


Subject(s)
Entamoeba histolytica , Entamoeba histolytica/genetics , Entamoeba histolytica/metabolism , Molecular Docking Simulation , Promoter Regions, Genetic , Heat-Shock Response/genetics , Gene Expression Regulation
7.
Parasitol Int ; 100: 102861, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38244854

ABSTRACT

Amoebiasis, caused by the enteric parasite, Entamoeba histolytica, is one of the major food- and water-borne parasitic diseases in developing countries with improper sanitation and poor hygiene. Infection with E. histolytica has diverse disease outcomes, which are determined by the genetic diversity of the infecting strains. Comparative genetic analysis of infecting E. histolytica strains associated with differential disease outcomes from different geographical regions of the world is important to identify the specific genetic patterns of the pathogen that trigger certain disease outcomes of Amoebiasis. The strategy is able to elucidate the genealogical relation and population structure of infecting E. histolytica strains from different geographical regions. In the present study, we have performed a comparative genetic analysis of circulating E. histolytica strains identified from different parts of the world, including our study region, based on five tRNA-linked short tandem repeat (STR) loci (i.e., D-A, NK2, R-R, STGA-D and A-L) and evaluated their potential associations with differential disease outcomes of Amoebiasis. A number of regional-specific, emerging haplotypes of E. histolytica, significantly associated with specific disease outcomes have been identified. Haplotypes, which have a significant positive association with asymptomatic and amoebic liver abscess outcomes, showed a significant negative association with diarrheal outcome, or vice versa. Comparative multi-locus analysis revealed that E. histolytica isolates from our study region are phylogenetically segregated from the isolates of other geographical regions. This study provides a crucial overview of the population structure and emerging pattern of the enteric parasite, E. histolytica.


Subject(s)
Amebiasis , Dysentery, Amebic , Entamoeba histolytica , Entamoeba , Entamoebiasis , Liver Abscess, Amebic , Animals , Entamoeba histolytica/genetics , Entamoebiasis/epidemiology , Entamoebiasis/parasitology , Liver Abscess, Amebic/parasitology , Dysentery, Amebic/parasitology , Sequence Analysis , Entamoeba/genetics
8.
Parasitol Int ; 99: 102846, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38110172

ABSTRACT

Amoebiasis, caused by the enteric parasite Entamoeba histolytica has differential disease outcomes. The association of parasite genotypes with outcomes of amoebic infection is still a paradox and requires to be explored. The genetic information of infecting strains from endemic settings of different geographical regions is essential to evaluate the relation. Comparative genetics of E. histolytica clinical isolates from different disease outcomes have been explored based on two tRNA-linked STR loci (STGA-D and A-L). All of the repeat patterns in the A-L locus were newly identified and unique to Indian isolates. The majority of newly identified repeat patterns in STGA-D locus have outcome-specific distributions, predicting the emergence of disease-specific mutations in this target locus. Statistical analysis further reinforces this observation, as identified repeat patterns only from STGA-D but not A-L locus were significantly associated with disease outcomes. Phylogenetic analysis indicates independent segregation and divergence of tRNA-linked STR arrays for each STR locus.


Subject(s)
Entamoeba histolytica , Entamoeba , Entamoebiasis , Animals , Entamoeba histolytica/genetics , Entamoebiasis/epidemiology , Entamoebiasis/parasitology , Genetic Markers , Phylogeny , Microsatellite Repeats , RNA, Transfer/genetics , Entamoeba/genetics
9.
Antimicrob Agents Chemother ; 67(11): e0056023, 2023 11 15.
Article in English | MEDLINE | ID: mdl-37874291

ABSTRACT

Amebiasis is an important cause of morbidity and mortality worldwide, and caused by infection with the protozoan parasite Entamoeba histolytica. Metronidazole is currently the first-line drug despite adverse effects and concerns on the emergence of drug resistance. Fumagillin, a fungal metabolite from Aspergillus fumigatus, and its structurally related natural and synthetic compounds have been previously explored as potential anti-angiogenesis inhibitors for cancers, anti-microbial, and anti-obese compounds. Although fumagillin was used for human amebiasis in clinical trials in 1950s, the mode of action of fumagillin remains elusive until now. In this report, we showed that fumagillin covalently binds to methionine aminopeptidase 2 (MetAP2) and non-covalently but abundantly binds to patatin family phospholipase A (PLA). Susceptibility against fumagillin of the amebic strains in which expression of E. histolytica MetAP2 (EhMetAP2) gene was silenced increased compared to control strain. Conversely, overexpression of EhMetAP2 mutants that harbors amino acid substitutions responsible for resistance to ovalicin, a fumagillin analog, in human MetAP2, also resulted in decrease in fumagillin susceptibility. In contrast, neither gene silencing nor overexpression of E. histolytica PLA (EhPLA) affected fumagillin susceptibility. These data suggest that EhPLA is not essential and not the target of fumagillin for its amebicidal activity. Taken together, our data have demonstrated that EhMetAP2 is the primary target for amebicidal activity of fumagillin, and EhMetAP2 represents a rational explorable target for the development of alternative therapeutic agents against amebiasis.


Subject(s)
Amebiasis , Entamoeba histolytica , Parasites , Animals , Humans , Entamoeba histolytica/genetics , Amebiasis/drug therapy , Polyesters
10.
Biochim Biophys Acta Gen Subj ; 1867(12): 130489, 2023 12.
Article in English | MEDLINE | ID: mdl-37827204

ABSTRACT

BACKGROUND: Entamoeba histolytica, an intestinal parasitic protozoan that usually lives and multiplies within the human gut, is the causative agent of amoebiasis. To date, de novo glutathione biosynthesis and its associated enzymes have not been identified in the parasite. Cysteine has been proposed to be the main intracellular thiol. METHODS: Using bioinformatics tools to search for glutaredoxin homologs in the E. histolytica genome database, we identified a coding sequence for a putative Grx-like small protein (EhGLSP) in the E. histolytica HM-1:IMSS genome. We produced the recombinant protein and performed its biochemical characterization. RESULTS: Through in vitro experiments, we observed that recombinant EhGLSP could bind GSH and L-Cys as ligands. However, the protein exhibited very low GSH-dependent disulfide reductase activity. Interestingly, via UV-Vis spectroscopy and chemical analysis, we detected that recombinant EhGLSP (freshly purified from Escherichia coli cells by IMAC) was isolated together with a redox-labile [FeS] bio-inorganic complex, suggesting that this protein could have some function linked to the metabolism of this cofactor. Western blotting showed that EhGLSP protein levels were modulated in E. histolytica cells exposed to exogenous oxidative species and metronidazole, suggesting that this protein cooperates with the antioxidant mechanisms of this parasite. CONCLUSIONS AND GENERAL SIGNIFICANCE: Our findings support the existence of a new metabolic actor in this pathogen. To the best of our knowledge, this is the first report on this protein class in E. histolytica.


Subject(s)
Entamoeba histolytica , Parasites , Animals , Humans , Entamoeba histolytica/genetics , Entamoeba histolytica/metabolism , Parasites/metabolism , Anaerobiosis , Glutaredoxins/genetics , Glutaredoxins/metabolism , Protozoan Proteins/metabolism
11.
Lett Appl Microbiol ; 76(10)2023 Oct 04.
Article in English | MEDLINE | ID: mdl-37740570

ABSTRACT

We developed a rapid multiplex loop-mediated isothermal amplification (mLAMP) assay for two common intestinal parasites-Entamoeba histolytica and Giardia duodenalis, where early detection may be helpful. The mLAMP assay was optimized for the detection of DNA of E. histolytica (18S rRNA gene) and G. duodenalis (Elongation factor 1 alpha gene) from standard strains by using six specific primers FIP (forward inner primer), BIP (backward inner primer), F3 (forward outer primer), B3 (backward outer primer), loopF (forward loop primer), and loopB (backward loop primer) for each gene target. The amplification time was 16-26 min for E. histolytica and 10-15 min for G. duodenalis, and the parasites could be distinguished based on melting-curve analysis for specific annealing temperatures (Tm) of 84°C-86°C and 88°C-90°C for E. histolytica and G. duodenalis, respectively. The analytical sensitivity was one fg, and no cross-reactivity with other intestinal pathogens was observed. Thus, the mLAMP assay could detect and clearly distinguish E. histolytica and G. duodenalis with a rapid turnaround time and excellent analytical sensitivity and specificity.


Subject(s)
Entamoeba histolytica , Giardia lamblia , Giardia lamblia/genetics , Entamoeba histolytica/genetics , Feces/parasitology , Nucleic Acid Amplification Techniques , Sensitivity and Specificity
12.
Parasitol Res ; 122(11): 2525-2537, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37642770

ABSTRACT

Amoebiasis is an infection caused by enteric protozoa, most commonly Entamoeba histolytica, and is globally considered a potentially severe and life-threatening condition. To understand the impact of the parasite genome on disease outcomes, it is important to study the genomes of infecting strains in areas with high disease prevalence. These studies aim to establish correlations between parasite genotypes and the clinical presentation of amoebiasis. We employ a strain typing approach that utilizes multiple loci, including SREHP and three polymorphic non-coding loci (tRNA-linked array N-K2 and loci 1-2 and 5-6), for high-resolution analysis. Distinct clinical phenotype isolates underwent amplification and sequencing of studied loci. The nucleotide sequences were analysed using Tandem Repeats Finder to detect short tandem repeats (STRs). These patterns were combined to assign a genotype, and the correlation between clinical phenotypes and repetitive patterns was statistically evaluated. This study found significant polymorphism in the size and number of PCR fragments at SREHP and 5-6 locus, while the 1-2 locus and NK2 locus showed variations in PCR product sizes. Out of 41 genotypes, two (I6 and I41) were significantly associated with their respective disease outcomes and were found in multiple isolates. We observed that I6 was linked with a symptomatic outcome, with a statistically significant p-value of 0.0183. Additionally, we found that I41 was associated with ALA disease outcome, with a p-value of 0.0089. Our study revealed new repeat units not previously reported, unveiling the genetic composition of E. histolytica strains in India, associated with distinct disease manifestations.


Subject(s)
Entamoeba histolytica , Entamoebiasis , Humans , Entamoebiasis/parasitology , Polymorphism, Genetic , Entamoeba histolytica/genetics , Phenotype , Microsatellite Repeats
13.
mSphere ; 8(5): e0017423, 2023 10 24.
Article in English | MEDLINE | ID: mdl-37584599

ABSTRACT

Entamoeba histolytica, a protozoan parasite, causes amoebiasis, which is a global public health problem. During the life cycle of this parasite, the properties of the cell membrane are changed markedly. To clarify the mechanism of membrane lipid changes, we exploited state-of-the-art untargeted lipidomic analysis, and atypical features of glycerophospholipids, lysoglycerophospholipids, and sphingolipids were observed compared with human equivalents. Here, we overview an entire E. histolytica glycerophospholipid metabolic pathway based on re-evaluated whole lipidome and genome along with the results of metabolic labeling experiments. We also discuss whether the E. histolytica lipid metabolism network, including the glycerophospholipid metabolic pathway, has unique features necessary for parasitic life cycle adaptation through gene loss and/or gain, and raise important questions involving biochemistry, molecular cell biology, and physiology underlying this network. Answering these questions will advance the understanding of Entamoeba physiology and will provide potential targets to develop new anti-amoebiasis drugs.


Subject(s)
Entamoeba histolytica , Parasites , Animals , Humans , Entamoeba histolytica/genetics , Lipid Metabolism , Life Cycle Stages , Glycerophospholipids/metabolism
14.
Int J Mol Sci ; 24(14)2023 Jul 21.
Article in English | MEDLINE | ID: mdl-37511519

ABSTRACT

This review of human amoebiasis is based on the most current knowledge of pathogenesis, diagnosis, treatment, and Entamoeba/microbiota interactions. The most relevant findings during this last decade about the Entamoeba parasite and the disease are related to the possibility of culturing trophozoites of different isolates from infected individuals that allowed the characterization of the multiple pathogenic mechanisms of the parasite and the understanding of the host-parasite relationship in the human. Second, the considerable advances in molecular biology and genetics help us to analyze the genome of Entamoeba, their genetic diversity, and the association of specific genotypes with the different amoebic forms of human amoebiasis. Based on this knowledge, culture and/or molecular diagnostic strategies are now available to determine the Entamoeba species and genotype responsible for invasive intestinal or extraintestinal amoebiasis cases. Likewise, the extensive knowledge of the immune response in amoebiasis with the appearance of new technologies made it possible to design diagnostic tools now available worldwide. Finally, the understanding of the interaction between the Entamoeba species and the intestinal microbiota aids the understanding of the ecology of this parasite in the human environment. These relevant findings will be discussed in this review.


Subject(s)
Amebiasis , Dysentery, Amebic , Entamoeba histolytica , Entamoeba , Humans , Entamoeba histolytica/genetics , Ecosystem , Amebiasis/diagnosis , Amebiasis/therapy , Amebiasis/parasitology , Dysentery, Amebic/diagnosis , Dysentery, Amebic/therapy , Dysentery, Amebic/parasitology , Intestines , Entamoeba/genetics
15.
J Biol Chem ; 299(9): 105100, 2023 09.
Article in English | MEDLINE | ID: mdl-37507019

ABSTRACT

In eukaryotic cells, the introns are excised from pre-mRNA by the spliceosome. These introns typically have a lariat configuration due to the 2'-5' phosphodiester bond between an internal branched residue and the 5' terminus of the RNA. The only enzyme known to selectively hydrolyze the 2'-5' linkage of these lariats is the RNA lariat debranching enzyme Dbr1. In humans, Dbr1 is involved in processes such as class-switch recombination of immunoglobulin genes, and its dysfunction is implicated in viral encephalitis, HIV, ALS, and cancer. However, mechanistic details of precisely how Dbr1 affects these processes are missing. Here we show that human Dbr1 contains a disordered C-terminal domain through sequence analysis and nuclear magnetic resonance. This domain stabilizes Dbr1 in vitro by reducing aggregation but is dispensable for debranching activity. We establish that Dbr1 requires Fe2+ for efficient catalysis and demonstrate that the noncatalytic protein Drn1 and the uncharacterized protein trichothiodystrophy nonphotosensitive 1 directly bind to Dbr1. We demonstrate addition of trichothiodystrophy nonphotosensitive 1 to in vitro debranching reactions increases the catalytic efficiency of human Dbr1 19-fold but has no effect on the activity of Dbr1 from the amoeba Entamoeba histolytica, which lacks a disordered C-terminal domain. Finally, we systematically examine how the identity of the branchpoint nucleotide affects debranching rates. These findings describe new aspects of Dbr1 function in humans and further clarify how Dbr1 contributes to human health and disease.


Subject(s)
Adaptor Proteins, Signal Transducing , RNA Nucleotidyltransferases , Humans , Introns , RNA Nucleotidyltransferases/genetics , RNA Nucleotidyltransferases/metabolism , RNA Splicing , Adaptor Proteins, Signal Transducing/metabolism , Enzyme Activation/genetics , Protein Domains , Protein Binding , Intrinsically Disordered Proteins/genetics , Intrinsically Disordered Proteins/metabolism , Entamoeba histolytica/enzymology , Entamoeba histolytica/genetics , Metals, Heavy/metabolism
16.
Sci Rep ; 13(1): 12192, 2023 07 27.
Article in English | MEDLINE | ID: mdl-37500681

ABSTRACT

Infections by Entamoeba histolytica (E. histolytica) lead to considerable morbidity and mortality worldwide and treatment is reliant on a single class of drugs, nitroimidazoles. Treatment failures and intermittent reports of relapse from different parts of world indicate towards development of clinical drug resistance. In the present study, susceptibility testing of clinical isolates of E. histolytica was carried against metronidazole and tinidazole. Additionally, anti-amoebic property of active compounds of Andrographis paniculata was also evaluated. Prevalence of metronidazole resistance gene (nim) in patients attending hospital was also done to get comprehensive insight of present situation of drug resistance in E. histolytica. Mean inhibitory concentration 50 (IC50) value of E. histolytica isolates against metronidazole and tinidazole was 20.01 and 16.1 µM respectively. Andrographolide showed minimum mean IC50 value (3.06 µM). Significant percentage inhibition of E. histolytica isolates by andrographolide was seen as compared to metronidazole (p = 0.0495). None of E. histolytica isolates showed presence of nim gene. However, in stool samples from hospital attending population, prevalence of nimE gene was found to be 76.6% (69/90) and 62.2% (56/90) in diarrheal and non-diarrheal samples respectively. Inhibitory concentration of commonly used nitroimidazoles against clinical isolates of E. histolytica are on rise. Percentage inhibition of E. histolytica isolates by andrographolide was significantly higher than control drug metronidazole.


Subject(s)
Entamoeba histolytica , Liver Abscess, Amebic , Nitroimidazoles , Humans , Nitroimidazoles/pharmacology , Nitroimidazoles/therapeutic use , Entamoeba histolytica/genetics , Liver Abscess, Amebic/diagnosis , Liver Abscess, Amebic/drug therapy , Metronidazole/pharmacology , Metronidazole/therapeutic use , Tinidazole/therapeutic use , Drug Repositioning
17.
Sci Rep ; 13(1): 9961, 2023 06 20.
Article in English | MEDLINE | ID: mdl-37340037

ABSTRACT

In developing countries, the prevalence of intestinal parasitic infection is still significant, particularly due to geographical and socioeconomic variables. The objective of this study was to map the distribution pattern of intestinal parasitic infection in a cohort of the Egyptian population, as well as to assess associated risk factors. A cross-sectional hospital-based study was conducted on 386 patients. A single fecal specimen was collected from the study individual and examined microscopically for the detection of parasitic infection. DNA was extracted from all samples and utilized to amplify Entamoeba histolytica complex species, Cryptosporidium species, Giardia intestinalis assemblages, and Blastocystis species using PCRs. Typing of Cryptosporidium species and Giardia intestinalis assemblages was performed using restriction enzymes RasI and HaeIII respectively. While Blastocystis spp. subtypes (ST) were identified through sequencing of PCR products and phylogenetic analysis. 59.6% (230/386) of the study patients were infected with one or more intestinal parasites, 87.4%; 201/230 of patients had mono-parasitic infections, and 12.6%; 29/230 had multiple-parasitic infections (P < 0.0001). The predominant protozoa were Blastocystis, followed by Entamoeba histolytica complex, and Giardia intestinalis both as mono-parasites and as part of multiple parasites. Molecular assays showed that Blastocystis ST3, Entamoeba dispar, Giardia intestinalis assemblage B, and Cryptosporidium hominis were the most prevalent species. Intestinal parasitic infection was significantly associated with age, gender, residence, and water source. Multi-parasitism showed that residency in a rural area was a risk factor (OR 4.49; 95% CI 1.51-13.37; P = 0.007). Egyptians residing in rural areas have a high prevalence of intestinal multi-parasitism. Therefore, to lessen the prevalence and effects of these infections in this group, effective and sustainable control methods, providing health education focusing on good personal hygiene habits, and providing a safe drinking water supply should be implemented.


Subject(s)
Blastocystis , Cryptosporidiosis , Cryptosporidium , Entamoeba histolytica , Giardia lamblia , Intestinal Diseases, Parasitic , Humans , Cryptosporidiosis/parasitology , Cross-Sectional Studies , Phylogeny , Egypt/epidemiology , Cryptosporidium/genetics , Intestinal Diseases, Parasitic/epidemiology , Intestinal Diseases, Parasitic/parasitology , Giardia lamblia/genetics , Blastocystis/genetics , Entamoeba histolytica/genetics
18.
Arch Razi Inst ; 78(1): 337-343, 2023 02.
Article in English | MEDLINE | ID: mdl-37312702

ABSTRACT

Amebiasis is caused by Entamoeba histolytica, a protozoan that is found worldwide. The degree of pathogenesis of clinical isolates varies greatly. This study was aimed to molecular identification of E. histolytica in children using the nested polymerase chain reaction (nPCR), and then, a genotyping of positive E. histolytica isolates using the quantitative PCR (qPCR) assay through targeting serine-rich E. histolytica protein (SREHP) gene. For this purpose, a total of 50 bloody diarrheic stool samples were collected from the children attended to the Al-Zahraa' Teaching Hospital and Alkut Hospital for Gynecology, Obstetric and Pediatrics (Alkut, Wasit, Iraq) were subjected to the present study from September to December 2021. Firstly, the extracted DNAs that amplified using specific primers through targeting 18S rRNA gene and tested using nPCR assay were revealed an overall 48% (24/50) positive samples for E. histolytica. For genotyping, our results were detected an existence of four different genotypes (I, II, III and IV) with a significant prevalence of Genotype-II (54.17%) when compared to Genotype-I (20.83%), Genotype-III (12.5%) and Genotype- IV (12.5%). In addition, results of melting temperature of targeted genotypes were 84ºC, 83 - 83.5ºC, 82.5ºC and 81ºC for Genotype-I, II, III and IV, respectively. In conclusion, molecular amplification of 18S rRNA gene was revealed the large prevalence of E. histolytica among bloody diarrheic children of study areas; while, amplification of SREHP gene was reflected the widespread phenotypic variation of the Genotype-II suggesting the high ability of this genotype to spread infection in children. In different endemic areas as Iraq, the utilization of high-resolution genotyping methods showed the extremely polymorphic genetic structure of this parasite.


Subject(s)
Entamoeba histolytica , Animals , Female , Pregnancy , Entamoeba histolytica/genetics , Genotype , DNA Primers , Hospitals , Iraq/epidemiology , RNA, Ribosomal, 18S
19.
Parasitol Res ; 122(7): 1651-1661, 2023 Jul.
Article in English | MEDLINE | ID: mdl-37202563

ABSTRACT

The de novo biosynthesis of phosphatidylcholine and phosphatidylethanolamine in Entamoeba histolytica is largely dependent on the CDP-choline and CDP-ethanolamine pathways. Although the first enzymes of these pathways, EhCK1 and EhCK2, have been previously characterized, their enzymatic activity was found to be low and undetectable, respectively. This study aimed to identify the unusual characteristics of these enzymes in this deadly parasite. The discovery that EhCKs prefer Mn2+ over the typical Mg2+ as a metal ion cofactor is intriguing for CK/EK family of enzymes. In the presence of Mn2+, the activity of EhCK1 increased by approximately 108-fold compared to that in Mg2+. Specifically, in Mg2+, EhCK1 exhibited a Vmax and K0.5 of 3.5 ± 0.1 U/mg and 13.9 ± 0.2 mM, respectively. However, in Mn2+, it displayed a Vmax of 149.1 ± 2.5 U/mg and a K0.5 of 9.5 ± 0.1 mM. Moreover, when Mg2+ was present at a constant concentration of 12 mM, the K0.5 value for Mn2+ was ~ 2.4-fold lower than that in Mn2+ alone, without affecting its Vmax. Although the enzyme efficiency of EhCK1 was significantly improved by about 25-fold in Mn2+, it is worth noting that its Km for choline and ATP were higher than in equimolar of Mg2+ in a previous study. In contrast, EhCK2 showed specific activity towards ethanolamine in Mn2+, exhibiting Michaelis-Menten kinetic with ethanolamine (Km = 312 ± 27 µM) and cooperativity with ATP (K0.5 = 2.1 ± 0.2 mM). Additionally, we investigated the effect of metal ions on the substrate recognition of human choline and ethanolamine kinase isoforms. Human choline kinase α2 was found to absolutely require Mg2+, while choline kinase ß differentially recognized choline and ethanolamine in Mg2+ and Mn2+, respectively. Finally, mutagenesis studies revealed that EhCK1 Tyr129 was critical for Mn2+ binding, while Lys233 was essential for substrate catalysis but not metal ion binding. Overall, these findings provide insight into the unique characteristics of the EhCKs and highlight the potential for new approaches to treating amoebiasis. Amoebiasis is a challenging disease for clinicians to diagnose and treat, as many patients are asymptomatic. However, by studying the enzymes involved in the CDP-choline and CDP-ethanolamine pathways, which are crucial for de novo biosynthesis of phosphatidylcholine and phosphatidylethanolamine in Entamoeba histolytica, there is great potential to discover new therapeutic approaches to combat this disease.


Subject(s)
Amebiasis , Entamoeba histolytica , Humans , Choline/metabolism , Choline Kinase/metabolism , Phosphatidylethanolamines/metabolism , Entamoeba histolytica/genetics , Entamoeba histolytica/metabolism , Ethanolamines/metabolism , Ethanolamine , Cytidine Diphosphate Choline/metabolism , Phosphatidylcholines , Protein Isoforms , Adenosine Triphosphate , Kinetics
20.
Mol Microbiol ; 119(5): 640-658, 2023 05.
Article in English | MEDLINE | ID: mdl-37037799

ABSTRACT

Apoptosis-inducing factor (AIF) is the major component of the caspase-independent cell death pathway that is considered to be evolutionarily ancient. Apoptosis is generally evolved with multicellularity as a prerequisite for the elimination of aged, stressed, or infected cells promoting the survival of the organism. Our study reports the presence of a putative AIF-like protein in Entamoeba histolytica, a caspase-deficient primitive protozoan, strengthening the concept of occurrence of apoptosis in unicellular organisms as well. The putative cytoplasmic EhAIF migrates to the nucleus on receiving stresses that precede its binding with DNA, following chromatin degradation and chromatin condensation as evident from both in vitro and in vivo experiments. Down-regulating the EhAIF expression attenuates the apoptotic features of insulted cells and increases the survival potency in terms of cell viability and vitality of the trophozoites, whereas over-expression of the EhAIF effectively enhances the phenomena. Interestingly, metronidazole, the most widely used drug for amoebiasis treatment, is also potent to elicit similar AIF-mediated cell death responses like other stresses indicating the AIF-mediated cell death could be the probable mechanism of trophozoite-death by metronidazole treatment. The occurrence of apoptosis in a unicellular organism is an interesting phenomenon that might signify the altruistic death that overall improves the population health.


Subject(s)
Apoptosis Inducing Factor , Entamoeba histolytica , Apoptosis Inducing Factor/metabolism , Apoptosis Inducing Factor/pharmacology , Entamoeba histolytica/genetics , Entamoeba histolytica/metabolism , Metronidazole/pharmacology , Metronidazole/metabolism , Apoptosis/physiology , Caspases/metabolism , Caspases/pharmacology , Chromatin/metabolism
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