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1.
Chinese Journal of Biotechnology ; (12): 2806-2817, 2023.
Article Dans Chinois | WPRIM | ID: wpr-981234

Résumé

Polygonum cuspidatum polyketide synthase 1 (PcPKS1) has the catalytic activity of chalcone synthase (CHS) and benzylidene acetone synthase (BAS), which can catalyze the production of polyketides naringenin chalcone and benzylidene acetone, and then catalyze the synthesis of flavonoids or benzylidene acetone. In this study, three amino acid sites (Thr133, Ser134, Ser33) that may affect the function of PcPKS1 were identified by analyzing the sequences of PcPKS1, the BAS from Rheum palmatum and the CHS from Arabidopsis thaliana, as well as the conformation of the catalytic site of the enzyme. Molecular modification of PcPKS1 was carried out by site-directed mutagenesis, and two mutants were successfully obtained. The in vitro enzymatic reactions were carried out, and the differences in activity were detected by high performance liquid chromatography (HPLC). Finally, mutants T133LS134A and S339V with bifunctional activity were obtained. In addition to bifunctional activities of BAS and CHS, the modified PcPKS1 had much higher BAS activity than that of the wild type PcPKS1 under the conditions of pH 7.0 and pH 9.0, respectively. It provides a theoretical basis for future use of PcPKS1 in genetic engineering to regulate the biosynthesis of flavonoids and raspberry ketones.


Sujets)
Séquence d'acides aminés , Polygonum cuspidatum/métabolisme , Polyketide synthases/composition chimique , Acétone , Mutagenèse dirigée , Flavonoïdes/métabolisme , Acyltransferases/métabolisme
2.
Chinese Journal of Biotechnology ; (12): 204-216, 2023.
Article Dans Chinois | WPRIM | ID: wpr-970369

Résumé

In this study, a single base editing system was used to edit the FecB and GDF9 gene to achieve a targeted site mutation from A to G and from C to T in Ouler Tibetan sheep fibroblasts, and to test its editing efficiency. Firstly, we designed and synthesized sgRNA sequences targeting FecB and GDF9 genes of Ouler Tibetan sheep, followed by connection to epi-ABEmax and epi-BE4max plasmids to construct vectors and electrotransfer into Ouler Tibetan sheep fibroblasts. Finally, Sanger sequencing was performed to identify the target point mutation of FecB and GDF9 genes positive cells. T-A cloning was used to estimate the editing efficiency of the single base editing system. We obtained gRNA targeting FecB and GDF9 genes and constructed the vector aiming at mutating single base of FecB and GDF9 genes in Ouler Tibetan sheep. The editing efficiency for the target site of FecB gene was 39.13%, whereas the editing efficiency for the target sites (G260, G721 and G1184) of GDF9 gene were 10.52%, 26.67% and 8.00%, respectively. Achieving single base mutation in FecB and GDF9 genes may facilitate improving the reproduction traits of Ouler Tibetan sheep with multifetal lambs.


Sujets)
Animaux , Ovis/génétique , Édition de gène , Tibet , Mutation , Phénotype , Mutagenèse dirigée
3.
Chinese Journal of Biotechnology ; (12): 1218-1226, 2022.
Article Dans Chinois | WPRIM | ID: wpr-927776

Résumé

In order to develop a simple and efficient site-directed mutagenesis solution, the Gibson assembly technique was used to clone the cyclin dependent kinase 4 gene with single or double site mutations, with the aim to simplify the overlap extension PCR. The gene fragments containing site mutations were amplified using a strategy similar to overlap extension PCR. Meanwhile, an empty plasmid was digested by double restriction endonucleases to generate a linearized vector with a short adaptor overlapping with the targeted gene fragments. The gene fragments were directly spliced with the linearized vector by Gibson assembly in an isothermal, single-reaction, creating a recombinant plasmid. After the recombinant plasmids were transformed into competent Escherichia coli DH5α, several clones were screened from each group. Through restriction analysis and DNA sequencing, it was found that the randomly selected clones were 100% target mutants. Since there was neither tedious multiple-round PCR amplification nor frequent DNA extraction operation, and there was no need to digest the original plasmid, this protocol circumvents many factors that may interfere with the conventional site-directed mutagenesis. Hence, genes with single or multiple mutations could be cloned easily and efficiently. In summary, the major defects associated with overlap extension PCR and rolling circle amplification were circumvented in this protocol, making it a good solution for site-directed mutagenesis.


Sujets)
Clones cellulaires , Mutagenèse dirigée , Mutation , Plasmides/génétique , Réaction de polymérisation en chaîne/méthodes
4.
Chinese Journal of Biotechnology ; (12): 4601-4614, 2022.
Article Dans Chinois | WPRIM | ID: wpr-970334

Résumé

Creatinine levels in biological fluids are important indicators for the clinical evaluation of renal function. Creatinase (CRE, EC3.5.3.3) is one of the key enzymes in the enzymatic measurement of creatinine concentration, and it is also the rate-limiting enzyme in the whole enzymatic cascade system. The poor catalytic activity of CRE severely limits its clinical and industrial applications. To address this issue, a semi-rational design is applied to increase the activity of a creatinase from Alcaligenes sp. KS-85 (Al-CRE). By high-throughput screen of saturation mutagenesis libraries on the selected hotspot mutations, multiple variant enzymes with increased activity are obtained. The five-point best variant enzyme (I304L/F395V/K351V/Y63S/Q88A) were further obtained by recombine the improved mutations sites that to showed a 2.18-fold increased specific activity. Additionally, structure analysis is conducted to understand the mechanism of the activity change. This study paves the way for a better practical application of creatinase and may help further understand its catalytic mechanism.


Sujets)
Créatinine , Mutagenèse dirigée , Ureohydrolases/génétique , Catalyse
5.
Protein & Cell ; (12): 877-888, 2021.
Article Dans Anglais | WPRIM | ID: wpr-922482

Résumé

A new coronavirus (SARS-CoV-2) has been identified as the etiologic agent for the COVID-19 outbreak. Currently, effective treatment options remain very limited for this disease; therefore, there is an urgent need to identify new anti-COVID-19 agents. In this study, we screened over 6,000 compounds that included approved drugs, drug candidates in clinical trials, and pharmacologically active compounds to identify leads that target the SARS-CoV-2 papain-like protease (PLpro). Together with main protease (M


Sujets)
Humains , Antiviraux/usage thérapeutique , Sites de fixation , COVID-19/virologie , Protéases de type papaïne des coronavirus/métabolisme , Cristallographie aux rayons X , Évaluation préclinique de médicament , Repositionnement des médicaments , Tests de criblage à haut débit/méthodes , Imidazoles/usage thérapeutique , Concentration inhibitrice 50 , Simulation de dynamique moléculaire , Mutagenèse dirigée , Naphtoquinones/usage thérapeutique , Inhibiteurs de protéases/usage thérapeutique , Structure tertiaire des protéines , Protéines recombinantes/isolement et purification , SARS-CoV-2/isolement et purification
6.
Chinese Journal of Biotechnology ; (12): 801-809, 2020.
Article Dans Chinois | WPRIM | ID: wpr-826896

Résumé

Mutants of proteins are the basis for studying their structure and function, this work aimed to establish an efficient and rapid method for constructing multi-site mutants. When four or more adjacent amino acid residues need to be mutated, firstly, two long and two short primers (long primers Ⅰ/Ⅰ, short primersⅡ/Ⅱ) were designed: the long primers contain mutated sites, and the number of mutant bases is ≤20 bp, the short primers do not contain mutated sites; GC contents of the long and short primers are ≤80%, and the difference of annealing temperature is ≤40 °C. Then two sets of reverse PCR amplifications were performed using primer pairs (Ⅰ/Ⅱand Ⅰ/Ⅱ) and templates, respectively. After amplification, each system can obtain non-methylated linear plasmids which contain mutated sites, and the breakpoints of the two sets of linear plasmids amplified by primers Ⅰ/Ⅱ and Ⅲ/Ⅳ were distributed on both sides of the mutated sites. Followed by digested by DpnⅠ to remove the methylated templates, the recovered PCR products, which were mixed in an equimolar ratio, were performed another round of denaturation and annealing: the two sets of linear plasmids were denatured at 95 °C and then annealed with each other's single-stranded DNA as templates to form open-loop plasmids, and then the transformants containing the mutations will be obtained after transformed the open-loop plasmids into Escherichia coli competent cells. Results showed that, this method can mutate 4 to 11 consecutive amino acid residues (8-20 bp) simultaneously, which will greatly simplify the construction of multi-site mutants, Thereby improve the efficiency of protein structure and function research further.


Sujets)
Amorces ADN , Génétique , Escherichia coli , Mutagenèse dirigée , Méthodes , Plasmides , Génétique , Réaction de polymérisation en chaîne
7.
Chinese Journal of Biotechnology ; (12): 1232-1240, 2020.
Article Dans Chinois | WPRIM | ID: wpr-826854

Résumé

Overlap extension PCR is a common method for site-directed mutagenesis. As objective gene sequence growing longer, it is often difficult to obtain the target product in the second round of PCR, and it is highly possible to introduce unexpected mutations into a long gene fragment by PCR. To circumvent these problems, we can only amplify a small gene fragment which contain the target mutation by overlap extension PCR, and then ligate it with vector to get target plasmid. If the restriction site at the end of the amplified fragment was not a single one on plasmid vector, double fragments ligation method could be used to construct target plasmid. Partial amplification, combined with double fragments ligation, could solve lots of problems in long gene mutagenesis. Taking retinoblastoma gene 1 S780E mutagenesis as an example, it is difficult to amplify whole retinoblastoma gene 1 by overlap extension PCR because of long fragment interfering the overlapping extension of second round PCR. However, it is relatively easy to amplify the F3 (1 968-2 787) fragment which contains target mutation S780E. There is a Nhe I site which can be used for ligation on 5' end of F3 fragment, but another Nhe I site on the plasmid restrained from doing so directly. In order to circumvent this obstacle, we ligated F3 fragment, combining with F2 (900-1 968) fragment which was digested from wild type plasmid, with the vector which contain F1 (1-900) fragment of the gene. That double fragments ligated with one vector at the same time, though less efficient, can recombine into a complete plasmid. The sequences of the two selected recombinant plasmids were consistent with the target mutation, which verified the feasibility of this scheme. As an improvement of overlap extension PCR, partial amplification and double fragments ligation methods could provide solutions for site directed mutagenesis of many long genes.


Sujets)
Séquence nucléotidique , Clonage moléculaire , Vecteurs génétiques , Génétique , Mutagenèse dirigée , Méthodes , Techniques d'amplification d'acides nucléiques , Plasmides , Réaction de polymérisation en chaîne
8.
Electron. j. biotechnol ; 42: 49-55, Nov. 2019. tab, ilus, graf
Article Dans Anglais | LILACS | ID: biblio-1087461

Résumé

Background: Protein glutaminase specifically deamidates glutamine residue in protein and therefore significantly improves protein solubility and colloidal stability of protein solution. In order to improve its preparation efficiency, we exploited the possibility for its secretory expression mediated by twin-arginine translocation (Tat) pathway in Bacillus licheniformis. Results: The B. licheniformis genome-wide twin-arginine signal peptides were analyzed. Of which, eleven candidates were cloned for construction of expression vectors to mediate the expression of Chryseobacterium proteolyticum protein glutaminase (PGA). The signal peptide of GlmU was confirmed that it significantly mediated PGA secretion into media with the maximum activity of 0.16 U/ml in Bacillus subtilis WB600. A mutant GlmU-R, being replaced the third residue aspartic acid of GlmU twin-arginine signal peptide with arginine by site-directed mutagenesis, mediated the improved secretion of PGA with about 40% increased (0.23 U/ml). In B. licheniformis CBBD302, GlmU-R mediated PGA expression in active form with the maximum yield of 6.8 U/ml in a 25-l bioreactor. Conclusions: PGA can be produced and secreted efficiently in active form via Tat pathway of B. licheniformis, an alternative expression system for the industrial-scale production of PGA.


Sujets)
Bacillus licheniformis/enzymologie , Glutaminase/métabolisme , Arginine , Plasmides , Prostaglandines A/composition chimique , Bacillus subtilis , Signaux de triage des protéines , Séquence nucléotidique , Mutagenèse dirigée , Acide aspartique , Escherichia coli , Bacillus licheniformis/génétique , Glutaminase/génétique
9.
Journal of Zhejiang University. Science. B ; (12): 983-994, 2019.
Article Dans Anglais | WPRIM | ID: wpr-1010506

Résumé

Genome sequencing projects revealed massive cryptic gene clusters encoding the undiscovered secondary metabolites in Streptomyces. To investigate the metabolic products of silent gene clusters in Streptomyces chattanoogensis L10 (CGMCC 2644), we used site-directed mutagenesis to generate ten mutants with point mutations in the highly conserved region of rpsL (encoding the ribosomal protein S12) or rpoB (encoding the RNA polymerase β-subunit). Among them, L10/RpoB (H437Y) accumulated a dark pigment on a yeast extract-malt extract-glucose (YMG) plate. This was absent in the wild type. After further investigation, a novel angucycline antibiotic named anthrachamycin was isolated and determined using nuclear magnetic resonance (NMR) spectroscopic techniques. Quantitative real-time polymerase chain reaction (qRT-PCR) analysis and electrophoretic mobility shift assay (EMSA) were performed to investigate the mechanism underlying the activation effect on the anthrachamycin biosynthetic gene cluster. This work indicated that the rpoB-specific missense H437Y mutation had activated anthrachamycin biosynthesis in S. chattanoogensis L10. This may be helpful in the investigation of the pleiotropic regulation system in Streptomyces.


Sujets)
Antibactériens/pharmacologie , Antioxydants/pharmacologie , Protéines bactériennes/génétique , Famille multigénique , Mutagenèse dirigée , Streptomyces/métabolisme
10.
The Korean Journal of Physiology and Pharmacology ; : 191-201, 2019.
Article Dans Anglais | WPRIM | ID: wpr-761784

Résumé

The transient receptor potential canonical (TRPC) 5 channel, known as a nonselective cation channel, has a crucial role in calcium influx. TRPC5 has been reported to be activated by muscarinic receptor activation and extracellular pH change and inhibited by the protein kinase C pathway. Recent studies have also suggested that TRPC5 is extracellularly activated by englerin A (EA), but the mechanism remains unclear. The purpose of this study is to identify the EA-interaction sites in TRPC5 and thereby clarify the mechanism of TRPC5 activation. TRPC5 channels are over-expressed in human embryonic kidney (HEK293) cells. TRPC5 mutants were generated by site-directed mutagenesis. The whole-cell patch-clamp configuration was used to record TRPC5 currents. Western analysis was also performed to observe the expression of TRPC5 mutants. To identify the EA-interaction site in TRPC5, we first generated pore mutants. When screening the mutants with EA, we observed the EA-induced current increases of TRPC5 abolished in K554N, H594N, and E598Q mutants. The current increases of other mutants were reduced in different levels. We also examined the functional intactness of the mutants that had no effect by EA with TRPC5 agonists, such as carbachol or GTPγS. Our results suggest that the three residues, Lys-554, His-594, and Glu-598, in TRPC5 might be responsible for direct interaction with EA, inducing the channel activation. We also suggest that although other pore residues are not critical, they could partly contribute to the EA-induced channel activation.


Sujets)
Humains , Calcium , Carbachol , Concentration en ions d'hydrogène , Canaux ioniques , Rein , Dépistage de masse , Mutagenèse dirigée , Protéines mutantes , Protéine kinase C , Récepteur muscarinique
11.
Chinese Journal of Biotechnology ; (12): 921-930, 2019.
Article Dans Chinois | WPRIM | ID: wpr-771834

Résumé

Genome editing is a genetic engineering technique that uses site-directed cleavage activity of specific artificial nucleases and endogenous DNA damage repair activity to generate insertions, deletions or substitutions in the targeted genomic loci. As the accuracy and efficiency of genome editing is improving and the operation is simple, the application of genome editing is expanding. This article provides an overview of the three major genome editing technologies and genome editing types, and the regulatory frameworks for genome-edited products were summarized in the United States, the European Union, and other countries. At the same time, based on the Chinese safety management principles and systems for genetically modified organisms (GMOs), the authors proposed a regulatory framework for genome-edited products. Genome-edited products should first be classified according to whether containing exogenous genetic components such as Cas9 editing enzymes or not. They should be regulated as traditional genetically modified organisms if they do. Otherwise, the regulation of genome-edited products depends on targeted modifications.


Sujets)
Systèmes CRISPR-Cas , Endonucleases , Édition de gène , Génome , Mutagenèse dirigée
12.
The Korean Journal of Physiology and Pharmacology ; : 91-99, 2018.
Article Dans Anglais | WPRIM | ID: wpr-727934

Résumé

Protein phosphatase 1 (PP1) is involved in various signal transduction mechanisms as an extensive regulator. The PP1 catalytic subunit (PP1c) recognizes and binds to PP1-binding consensus residues (FxxR/KxR/K) in NBCe1-B. Consequently, we focused on identifying the function of the PP1-binding consensus residue, ⁹²²FMDRLK⁹²⁷ , in NBCe1-B. Using site-directed mutagenesis and co-immunoprecipitation assays, we revealed that in cases where the residues were substituted (F922A, R925A, and K927A) or deleted (deletion of amino acids 922–927), NBCe1-B mutants inhibited PP1 binding to NBCe1-B. Additionally, by recording the intracellular pH, we found that PP1-binding consensus residues in NBCe1-B were not only critical for NBCe1-B activity, but also relevant to its surface expression level. Therefore, we reported that NBCe1-B, as a substrate of PP1, contains these residues in the C-terminal region and that the direct interaction between NBCe1-B and PP1 is functionally critical in controlling the regulation of the HCO₃⁻ transport. These results suggested that like IRBIT, PP1 was another novel regulator of HCO₃⁻ secretion in several types of epithelia.


Sujets)
Acides aminés , Domaine catalytique , Consensus , Concentration en ions d'hydrogène , Immunoprécipitation , Mutagenèse dirigée , Protein Phosphatase 1 , Transduction du signal
13.
Braz. j. med. biol. res ; 51(2): e6546, 2018. graf
Article Dans Anglais | LILACS | ID: biblio-889018

Résumé

The inducible inflammatory enzyme cycloxigenase-2 is up-regulated in cancer, and favors tumor progression. Cycloxigenase-2 is encoded by the prostaglandin-endoperoxide synthase 2 (PTGS2) gene, which presents sequence variations in the promoter region (PR) and in the 3′-untranslated region (3′-UTR). Different PR (rs689465, rs689466, rs20417) and 3′-UTR (rs5275) variants were generated by site-directed mutagenesis, and combined in haplotypes to access expression levels using a reporter system (luciferase) in human cells (MCF-7 and HEK293FT). Luciferase activity did not differ significantly among PTGS2 PR constructs, except for pAAC (containing variant allele rs20417 C), with 40% less activity than pAAG (wild-type sequence) in MCF-7 cells (P<0.01). Despite the lack of individual significant differences, PTGS2 PR constructs enclosing rs689466 G (pAGG and pAGC) showed an approximate two-fold increase in luciferase activity when compared to those containing rs689466 A (pAAG, pGAC, pAAC and pGAG) in both cell lines (P<0.001 for MCF-7 and P=0.03 for HEK293FT). The effect of PTGS2 3′-UTR sequences varied between MCF-7 and HEK293FT: MCF-7 cells showed significant reduction (40-60%) in luciferase activity (at least P<0.01), whereas HEK293FT cells showed more diverse results, with an average 2-fold increase when combined constructs (PR and 3′-UTR) were compared to respective parental PR sequences. The contribution of 3′-UTR variant (rs5275) was not consistent in either cell line. Despite the modulation of the 3′-UTR, with variable effects of rs5275, the enhancing transcriptional effect of rs689466 G was still detectable (P<0.0001 in MCF-7 or P=0.03 in HEK293FT cells).


Sujets)
Humains , Régulation de l'expression des gènes tumoraux/génétique , Cyclooxygenase 2/génétique , Haplotypes , Régulation positive , Mutagenèse dirigée , Polymorphisme de nucléotide simple , Lignée cellulaire tumorale , Cyclooxygenase 2/métabolisme , Cellules MCF-7 , Génotype , Luciferases/métabolisme
14.
Rio de Janeiro; s.n; 2018. xiv,119 p. ilus.
Thèse Dans Portugais | LILACS | ID: biblio-909411

Résumé

Resumo: A Febre Amarela (FA) é uma doença infecciosa não contagiosa, causada por um arbovírus e objeto de preocupação sanitária mundial. A principal medida de controle é a vacinação com o vírus atenuado da FA, cepa 17D, que é capaz de induzir resposta imune protetora a longo prazo com administração em dose única. Vírus atenuados são potentes vetores de expressão, pois disseminam o antígeno no hospedeiro e induzem resposta imune protetora, contribuindo para o desenvolvimento de vacinas recombinantes. Diversas estratégias foram desenvolvidas para expressão de genes heterólogos pelo vírus vacinal FA 17D. Entretanto, a inserção induz proliferação viral e imunogenicidade reduzidas. Neste trabalho foi utilizado o vírus vacinal FA 17D recombinante expressando a proteína repórter enhanced green fluorescent protein (EGFP) para avaliar o impacto de mutações específicas que possam modular a replicação viral. Mutações nas proteínas E, NS3 e NS4B foram descritas por aumentarem a proliferação viral em cultura de células e em camundongos, no genoma do vírus da dengue, sorotipos 1 e 2. As mutações em E400 (F→L), E403 (T→I), NS3439 (V→S) e NS4B54 (L→F) foram inseridas no genoma do vírus FA/EGFP, com a finalidade de caracterizar o seu efeito na proliferação viral e na indução de resposta imune humoral. O cDNA do genoma viral FA/EGFP foi utilizado para gerar vírus recombinantes carreando uma, duas ou três mutações. O estudo de proliferação viral foi realizado por cinética de infecção de células das linhagens Vero, Huh7 e C6/36. Os resultados mostram que os vírus da FA recombinantes se proliferam menos que o vírus vacinal FA 17DD. Além disso, a infectividade dos vírus mutantes em células de mamífero é diferente da infectividade em células de mosquitoOs vírus que carreiam as mutações em E400/NS3439 e E400/NS3439/NS4B54 tem a proliferação viral significativamente prejudicada em células de mamífero. Os vírus que carreiam a mutação em E400 apresentaram aumento de proliferação viral em comparação com o vírus FA/EGFP original, em células de mosquito. As diferenças entre os tipos celulares podem ter sido causadas pelas características fisiológicas das células durante a infecção viral e pelas diferenças de propriedades das proteínas virais ocasionadas pela inserção das mutações. Não foi possível recuperar partículas virais infecciosas carreando a mutação em E403. A modelagem molecular das proteínas virais mostrou diferenças discretas de carga, volume de superfície proteica e propriedade físico-química induzidas pelas mutações. Nenhuma das mutações influenciou nas interações intramoleculares. A imunogenicidade foi avaliada por imunização de camundongos das linhagens C57BL/6 e BALB/c com os vírus carreando mutações únicas e os soros foram analisados por PRNT e ELISA para obter os títulos de anticorpos neutralizantes para FA e anticorpos para GFP, respectivamente. Os soros dos camundongos imunizados com os vírus recombinantes apresentam menores títulos de anticorpos neutralizantes em comparação ao grupo imunizado com o vírus vacinal, porém não houveram alterações na indução de anticorpos para GFP. De maneira geral, as mutações em E400 e E403 produziram maiores efeitos sobre a proliferação viral e as mutações NS3439 e NS4B54, na imunogenicidade. (AU)


Sujets)
Souris , Virus de la dengue , Mutagenèse dirigée , Fièvre jaune , Virus de la fièvre jaune
15.
Electron. j. biotechnol ; 26: 52-59, Mar. 2017. ilus, tab, graf
Article Dans Anglais | LILACS | ID: biblio-1008980

Résumé

Background: Xylanases are considered one of the most important enzymes in many industries. However, their low thermostability hampers their applications in feed pelleting, pulp bleaching, and so on. The main aim of this work was to improve the thermostability of Trichoderma ressei xylanase 2 (Xyn2) by introducing disulfide bonds between the N-terminal and α-helix and the ß-sheet core. Results: In this work, two disulfide bonds were separately introduced in the Xyn2 to connect the N-terminal and α-helix to the ß-sheet core of Xyn2. The two disulfide bonds were introduced by site-directed mutagenesis of the corresponding residues. The half-life of the mutants Xyn2C14­52 (disulfide bond between ß-sheets B2 and B3) and Xyn2C59­149 (disulfide bond between ß-sheets A5 and A6) at 60°C was improved by approximately 2.5- and 1.8-fold compared to that of the wild type Xyn2. In addition, the enzyme's resistance to alkali and acid was enhanced. Conclusion: Our results indicated that the connection of the N-terminal and α-helix to the ß-sheet core is due to the stable structure of the entire protein.


Sujets)
Trichoderma/enzymologie , Xylosidases/métabolisme , Disulfures/métabolisme , Spectrométrie de masse , Température , Trichoderma/génétique , Trichoderma/métabolisme , Xylanes/métabolisme , Xylosidases/génétique , Stabilité enzymatique , Cinétique , Mutagenèse dirigée , Concentration en ions d'hydrogène , Mutation
16.
Experimental & Molecular Medicine ; : e388-2017.
Article Dans Anglais | WPRIM | ID: wpr-158420

Résumé

We evaluated the role of IL-10- in IL-33-mediated cholesterol reduction in macrophage-derived foam cells (MFCs) and the mechanism by which IL-33 upregulates IL-10. Serum IL-33 and IL-10 levels in coronary artery disease patients were measured. The effects of IL-33 on intra-MFC cholesterol level, IL-10, ABCA1 and CD36 expression, ERK 1/2, Sp1, STAT3 and STAT4 activation, and IL-10 promoter activity were determined. Core sequences were identified using bioinformatic analysis and site-specific mutagenesis. The serum IL-33 levels positively correlated with those of IL-10. IL-33 decreased cellular cholesterol level and upregulated IL-10 and ABCA1 but had no effect on CD36 expression. siRNA-IL-10 partially abolished cellular cholesterol reduction and ABCA1 elevation by IL-33 but did not reverse the decreased CD36 levels. IL-33 increased IL-10 mRNA production but had little effect on its stability. IL-33 induced ERK 1/2 phosphorylation and increased the luciferase expression driven by the IL-10 promoter, with the highest extent within the −2000 to −1752 bp segment of the 5′-flank of the transcription start site; these effects were counteracted by U0126. IL-33 activated Sp1, STAT3 and STAT4, but only the STAT3 binding site was predicted in the above segment. Site-directed mutagenesis of the predicted STAT3-binding sites (CTGCTTCCTGGCAGCAGAA→CTGCCTGGCAGCAGAA) reduced luciferase activity, and a STAT3 inhibitor blocked the regulatory effects of IL-33 on IL-10 expression. Chromatin immunoprecipitation (CHIP) confirmed the STAT3-binding sequences within the −1997 to −1700 and −1091 to −811 bp locus regions. IL-33 increased IL-10 expression in MFCs via activating ERK 1/2 and STAT3, which subsequently promoted IL-10 transcription and thus contributed to the beneficial effects of IL-33 on MFCs.


Sujets)
Humains , Sites de fixation , Cholestérol , Immunoprécipitation de la chromatine , Biologie informatique , Maladie des artères coronaires , Cellules spumeuses , Interleukine-10 , Interleukine-33 , Luciferases , Macrophages , Mutagenèse dirigée , Phosphorylation , ARN messager , Site d'initiation de la transcription
17.
Electron. j. biotechnol ; 19(6): 32-37, Nov. 2016. ilus
Article Dans Anglais | LILACS | ID: biblio-840310

Résumé

Background: To identify the critical amino acid residues that contribute to the high enzyme activity and good thermostability of Yersinia enterocolitica subsp. palearctica (Y. NSN), 15 mutants of Y. NSN were obtained by site-directed mutagenesis in this study. And their enzyme activity and thermostability were assayed. Effect of several factors on the enzyme activity and thermostability of Y. NSN, was also investigated. Results: The results showed that the I203F and D264E mutants retained approximately 75% and 70% enzyme activity, respectively, compared to the wild-type enzyme. In addition to the I203F and D264E mutants, the mutant E202A had an obvious influence on the thermostability of Y. NSN. According to the analysis of enzyme activity and thermostability of Y. NSN, we found that Glu202, Ile203 and Asp264 might be the key residues for its high enzyme activity and good thermostability. Conclusions: Among all factors affecting enzyme activity and thermostability of Y. NSN, they failed to explain the experimental results well. One reason might be that the enzyme activity and thermostability of Y. NSN were affected not only by a single factor but also by the entire environment.


Sujets)
Désoxyribonucléases/composition chimique , Désoxyribonucléases/génétique , Yersinia enterocolitica/enzymologie , Endonucleases/composition chimique , Endonucleases/génétique , Dosages enzymatiques , Stabilité enzymatique , Température élevée , Mutagenèse dirigée
18.
Electron. j. biotechnol ; 19(4): 26-30, July 2016. ilus
Article Dans Anglais | LILACS | ID: lil-793949

Résumé

Background: Glycine oxidase (GO), a type of D-amino acid oxidase, is of biotechnological interest for its potential in several fields. In our previous study, we have characterized a new glycine oxidase (BceGO) from Bacillus cereus HYC-7. Here, a variant of N336K with increased the affinity against all the tested substrate was obtained by screening a random mutant library of BceGO. It is observed that the residue N336 is invariable between its homogeneous enzymes. This work was aimed to explore the role of the residue N336 in glycine oxidase by site-directed mutagenesis, kinetic assay, structure modeling and substrate docking. Results: The results showed that the affinity of N336H, N336K and N336R increased gradually toward all the substrates, with increase in positive charge on side chain, while N336A and N336G have not shown a little significant effect on substrate affinity. The structure modeling studies indicated that the residue Asn336 is located in a random coil between -J-18 and a-10. Also, far-UV CD spectra-analysis showed that the mutations at Asn336 do not affect the secondary structure of enzyme. Conclusion: Asn336 site was located in a conserved GHYRNG loop which adjoining to substrate and the isoalloxazine ring of FAD, and involved in the substrate affinity of glycine oxidase. This might provide new insight into the structure-function relationship of GO, and valuable clue to redesign its substrate specificity for some biotechnological application.


Sujets)
Bacillus cereus/métabolisme , Amino-acid oxidoreductases/métabolisme , Glycine/analogues et dérivés , Spécificité du substrat , Cinétique , Réaction de polymérisation en chaîne/méthodes , Mutagenèse dirigée , Amino-acid oxidoreductases/génétique
19.
Protein & Cell ; (12): 417-433, 2016.
Article Dans Anglais | WPRIM | ID: wpr-757122

Résumé

Microglia play a pivotal role in clearance of Aβ by degrading them in lysosomes, countering amyloid plaque pathogenesis in Alzheimer's disease (AD). Recent evidence suggests that lysosomal dysfunction leads to insufficient elimination of toxic protein aggregates. We tested whether enhancing lysosomal function with transcription factor EB (TFEB), an essential regulator modulating lysosomal pathways, would promote Aβ clearance in microglia. Here we show that microglial expression of TFEB facilitates fibrillar Aβ (fAβ) degradation and reduces deposited amyloid plaques, which are further enhanced by deacetylation of TFEB. Using mass spectrometry analysis, we firstly confirmed acetylation as a previously unreported modification of TFEB and found that SIRT1 directly interacted with and deacetylated TFEB at lysine residue 116. Subsequently, SIRT1 overexpression enhanced lysosomal function and fAβ degradation by upregulating transcriptional levels of TFEB downstream targets, which could be inhibited when TFEB was knocked down. Furthermore, overexpression of deacetylated TFEB at K116R mutant in microglia accelerated intracellular fAβ degradation by stimulating lysosomal biogenesis and greatly reduced the deposited amyloid plaques in the brain slices of APP/PS1 transgenic mice. Our findings reveal that deacetylation of TFEB could regulate lysosomal biogenesis and fAβ degradation, making microglial activation of TFEB a possible strategy for attenuating amyloid plaque deposition in AD.


Sujets)
Animaux , Humains , Souris , Maladie d'Alzheimer , Métabolisme , Anatomopathologie , Peptides bêta-amyloïdes , Métabolisme , Précurseur de la protéine bêta-amyloïde , Génétique , Métabolisme , Facteurs de transcription à motifs basiques hélice-boucle-hélice et à glissière à leucines , Chimie , Génétique , Métabolisme , Encéphale , Métabolisme , Cellules cultivées , Canaux chlorure , Génétique , Métabolisme , Modèles animaux de maladie humaine , Cellules HEK293 , Lysosomes , Génétique , Métabolisme , Souris transgéniques , Microglie , Biologie cellulaire , Métabolisme , Mutagenèse dirigée , Peptides , Chimie , Liaison aux protéines , Interférence par ARN , Sirtuine-1 , Génétique , Métabolisme
20.
Clinical and Experimental Vaccine Research ; : 159-168, 2016.
Article Dans Anglais | WPRIM | ID: wpr-176937

Résumé

PURPOSE: The development of a genetically modified live rabies vaccine applicable to wild raccoon dogs is necessary for the eradication of rabies in Korea. Thus, we constructed a recombinant rabies virus (RABV) called the ERAGS strain, using a reverse genetic system and evaluated its safety and efficacy in mice and its safety and immunogenicity in raccoon dogs. MATERIALS AND METHODS: ERAGS, which has Asn194Ser and Arg333Glu substitutions in the glycoprotein, was constructed using site-directed mutagenesis. Mice were inoculated with the ERAGS strain (either 10(5.0) or 10(7.0) FAID(50)/mL) via intramuscular (IM) or intracranial injections and then challenged with a virulent RABV. Raccoon dogs were administered the ERAGS strain (10(8.0) FAID(50)/mL) either orally or via the IM route and the immunogenicity of the strain was evaluated using fluorescent antibody virus neutralization tests. RESULTS: The ERAGS strain inoculated into murine neuroblastoma cells reached 10(7.8) FAID(50)/mL at 96-hour post-inoculation. The virus was not pathogenic and induced complete protection from virulent RABV in immunized 4- and 6-week-old mice. Korean raccoon dogs immunized with the ERAGS strain via IM or oral route were also safe from the virus and developed high titer levels (26.4-32.8 IU/mL) of virus-neutralizing antibody (VNA) at 4 weeks post-inoculation. CONCLUSION: The ERAGS RABV strain was effectively protective against rabies in mice and produced a high VNA titer in raccoon dogs.


Sujets)
Animaux , Souris , Glycoprotéines , Corée , Bouche , Mutagenèse dirigée , Neuroblastome , Tests de neutralisation , Vaccins antirabiques , Virus de la rage , Rage (maladie) , Chiens viverrins , Ratons laveurs , Vaccins
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