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1.
J Antibiot (Tokyo) ; 74(4): 255-259, 2021 04.
Article in English | MEDLINE | ID: mdl-33318622

ABSTRACT

Notch signaling inhibitors with the potential of immune suppressor production by pathogenic bacteria for easy host infection were searched from extracts of Nocardia sp. Nocobactin NA-a (compound 1) and nocobactin NA-b (compound 2), which have been suggested as pathogenesis factors, were isolated from N. farcinica IFM 11523 isolated from the sputum of a Japanese patient with chronic bronchitis. Compounds 1 and 2 showed Notch inhibitory activities with IC50 values of 12.4 and 17.6 µM, respectively. Compound 1 and 2 decreased of Notch1 protein, Notch intracellular domain, and hairy and enhancer of split 1, which is a Notch signaling target protein. In addition, compounds 1 and 2 showed cytotoxicity against mouse macrophage-like cell line RAW264.7 with IC50 values of 18.9 and 21.1 µM, respectively. These results suggested that the Notch inhibitors production by pathogenic bacteria may increase pathogen infectivity.


Subject(s)
Host-Pathogen Interactions , Nocardia Infections/microbiology , Nocardia/pathogenicity , Oxazoles/metabolism , Receptors, Notch/metabolism , Bronchitis, Chronic/microbiology , Evolution, Molecular , Humans , Hydroxamic Acids/isolation & purification , Hydroxamic Acids/pharmacology , Magnetic Resonance Spectroscopy , Nocardia/growth & development , Nocardia/isolation & purification , Nocardia/metabolism , Oxazoles/isolation & purification , Oxazoles/pharmacology , Receptors, Notch/antagonists & inhibitors , Signal Transduction , Sputum/microbiology , Virulence Factors/metabolism , Virulence Factors/pharmacology
2.
Chin J Nat Med ; 18(9): 677-683, 2020 Sep.
Article in English | MEDLINE | ID: mdl-32928511

ABSTRACT

Inthomycins are polyketide antibiotics which contain a terminal carboxamide group and a triene chain. Inthomycin B (1) and its two new analogues 2 and 3 were isolated from the crude extract of Streptomyces pactum L8. Identification of the gene cluster for inthomycin biosynthesis as well as the 15N-labeled glycine incorporation into inthomycins are described. Combined with the gene deletion of the rare P450 domain in the NRPS module, a formation mechanism of carboxamide moiety in inthomycins was proposed via an oxidative release of the assembly chain assisted by the P450 domain.


Subject(s)
Anti-Bacterial Agents/biosynthesis , Fatty Acids, Unsaturated/biosynthesis , Anti-Bacterial Agents/chemistry , Anti-Bacterial Agents/isolation & purification , Fatty Acids, Unsaturated/chemistry , Fatty Acids, Unsaturated/genetics , Fatty Acids, Unsaturated/isolation & purification , Genes, Bacterial , Molecular Structure , Multigene Family , Oxazoles/chemistry , Oxazoles/isolation & purification , Oxidation-Reduction , Streptomyces/chemistry
3.
Appl Environ Microbiol ; 86(20)2020 10 01.
Article in English | MEDLINE | ID: mdl-32801183

ABSTRACT

Inthomycins belong to a growing family of oxazole-containing polyketides and exhibit a broad spectrum of anti-oomycete and herbicidal activities. In this study, we purified inthomycins A and B from the metabolites of Streptomyces sp. strain SYP-A7193 and determined their chemical structures. Genome sequencing, comparative genomic analysis, and gene disruption of Streptomyces sp. SYP-A7193 showed that the inthomycin biosynthetic gene cluster (itm) belonged to the hybrid polyketide synthase (PKS)/nonribosomal peptide synthetase (NRPS) system. Functional domain comparison and disruption/complementation experiments of itm12 resulted in the complete loss of inthomycins A and B and the subsequent restoration of their production, confirming that itm12 encodes a discrete acyltransferase (AT), and hence, itm was considered to belong to the trans-AT type I PKS system. Moreover, the disruption/complementation experiments of itm15 also resulted in the loss and restoration of inthomycin A and B formation. Further gene cloning, expression, purification, and activity verification of itm15 revealed that Itm15 is a cyclodehydratase that catalyzes a straight-chain dehydration reaction to form an oxazole ring for the biosynthesis of inthomycins A and B. Thus, we discovered a novel enzyme that catalyzes oxazole ring formation and elucidated the complete biosynthetic pathway of inthomycins.IMPORTANCEStreptomyces species produce numerous secondary metabolites with diverse structures and pharmacological activities that are beneficial for human health and have several applications in agriculture. In this study, hybrid nonribosomal peptide synthetase/polyketide synthase metabolites inthomycins A and B were isolated from after fermenting Streptomyces sp. SYP-A7193. Genome sequencing, gene disruption, gene complementation, heterologous expression, and activity assay revealed that the biosynthesis gene assembly line of inthomycins A and B was a 95.3-kb trans-AT type I PKS system in the strain SYP-A7193. More importantly, Itm15, a cyclodehydratase, was identified to be an oxazole ring formation enzyme required for the biosynthesis of inthomycins A and B; it is significant to discover this catalyzation reaction in the PKS/NRPS system in the field of microbiology. Our findings could provide further insights into the diversity of trans-AT type I PKS systems and the mechanism of oxazole cyclization involved in the biosynthesis of natural products.


Subject(s)
Fatty Acids, Unsaturated/chemistry , Genes, Bacterial , Multigene Family , Oxazoles/metabolism , Streptomyces/genetics , Fatty Acids, Unsaturated/isolation & purification , Oxazoles/chemistry , Oxazoles/isolation & purification , Streptomyces/chemistry , Streptomyces/metabolism
4.
Molecules ; 25(14)2020 Jul 09.
Article in English | MEDLINE | ID: mdl-32659902

ABSTRACT

The chiral separation of etoxazole enantiomers on Lux Cellulose-1, Lux Cellulose-3, Chiralpak IC, and Chiralpak AD chiral columns was carefully investigated by normal-phase high performance liquid chromatography and reverse-phase high performance liquid chromatography (HPLC). Hexane/isopropanol, hexane/n-butanol, methanol/water, and acetonitrile/water were used as mobile phase at a flow rate of 0.8 mL/min. The effects of chiral stationary phase, mobile phase component, mobile phase ratio, and temperature on etoxazole separation were also studied. Etoxazole enantiomers were baseline separated on Lux Cellulose-1, Chiralpak IC, and Chiralpak AD chiral columns, and partially separated on Lux Cellulose-3 chiral column under normal-phase HPLC. However, the complete separation on Lux Cellulose-1, Chiralpak IC, and partial separation on Chiralpak AD were obtained under reverse-phase HPLC. Normal-phase HPLC presented better resolution for etoxazole enantiomers than reverse-phase HPLC. Thermodynamic parameters, including ΔH and ΔS, were also calculated based on column temperature changes from 10 °C to 40 °C, and the maximum resolutions (Rs) were not always acquired at the lowest temperature. Furthermore, the optimized method was successfully applied to determine etoxazole enantiomers in cucumber, cabbage, tomato, and soil. The results of chiral separation efficiency of etoxazole enantiomers under normal-phase and reverse-phase HPLC were compared, and contribute to the comprehensive environmental risk assessment of etoxazole at the enantiomer level.


Subject(s)
Oxazoles/chemistry , Oxazoles/isolation & purification , Vegetables/chemistry , Chromatography, High Pressure Liquid , Chromatography, Reverse-Phase , Stereoisomerism
5.
J Antibiot (Tokyo) ; 73(11): 756-765, 2020 11.
Article in English | MEDLINE | ID: mdl-32555501

ABSTRACT

Chemical investigation of a previously unreported indigenous Australian Streptomyces strain MST-91080 has identified six novel analogues related to the oxazole-pendanted macrodiolide, conglobatin. Phylogenetic analysis of the 16S rRNA gene sequence identified MST-91080 as a species of Streptomyces, distinct from reported conglobatin producer, Streptomyces conglobatus ATCC 31005. Conglobatins B-E diverge from conglobatin through differing patterns of methylation on the macrodiolide skeleton. The altered methyl positions suggest a deviation from the published biosynthetic pathway, which proposed three successive methylmalonyl-CoA extender unit additions to the conglobatin monomer. Conglobatins B1, C1 and C2 exhibited more potent cytotoxic activity selectively against the NS-1 myeloma cell line (IC50 0.084, 1.05 and 0.45 µg ml-1, respectively) compared with conglobatin (IC50 1.39 µg ml-1).


Subject(s)
Cytotoxins/isolation & purification , Oxazoles/isolation & purification , Cell Line, Tumor/drug effects , Cytotoxins/chemistry , Cytotoxins/pharmacology , Humans , Magnetic Resonance Spectroscopy , Molecular Structure , Oxazoles/chemistry , Streptomyces/chemistry
6.
J Antibiot (Tokyo) ; 72(8): 634-639, 2019 08.
Article in English | MEDLINE | ID: mdl-31118481

ABSTRACT

A new catecholate-containing siderophore, labrenzbactin (1), was isolated from the fermentation broth of a coral-associated bacterium Labrenzia sp. The structure and absolute configuration of 1 was determined by spectroscopic methods and Marfey's analysis. Overall, 1 showed antimicrobial activity against Ralstonia solanacearum SUPP1541 and Micrococcus luteus ATCC9341 with MIC values of 25 and 50 µg ml-1, respectively, and cytotoxicity against P388 murine leukemia cells with an IC50 of 13 µM.


Subject(s)
Alphaproteobacteria/chemistry , Anthozoa/microbiology , Anti-Bacterial Agents/isolation & purification , Catechols/isolation & purification , Oxazoles/isolation & purification , Siderophores/isolation & purification , Alphaproteobacteria/isolation & purification , Animals , Anti-Bacterial Agents/pharmacology , Antibiotics, Antineoplastic/isolation & purification , Antibiotics, Antineoplastic/pharmacology , Catechols/pharmacology , Drug Screening Assays, Antitumor , Fermentation , Leukemia P388/drug therapy , Mice , Microbial Sensitivity Tests , Micrococcus luteus/drug effects , Molecular Structure , Oxazoles/pharmacology , Ralstonia/drug effects , Siderophores/pharmacology
7.
Sci Rep ; 9(1): 7540, 2019 05 17.
Article in English | MEDLINE | ID: mdl-31101864

ABSTRACT

Discovery of novel bioactive compounds is important not only for therapeutic purposes but also for understanding the mechanisms of biological processes. To screen bioactive compounds that affect nuclear morphology in marine organism extracts, we employed a microscopy-based assay using DNA staining of human cancer cells. A crude extract from a marine sponge Mycale aff. nullarosette, collected from the east coast of Japan, induced cellular binucleation. Fractionation of the extract led to the isolation of mycalolides A and B, and 38-hydroxymycalolide B as the active components. Mycalolides have been identified as marine toxins that induce depolymerization of the actin filament. Live cell imaging revealed that low concentrations of mycalolide A produce binucleated cells by inhibiting the completion of cytokinesis. At higher concentrations, however, mycalolide A causes immediate disruption of actin filaments and changes in cell morphology, yielding rounded cells. These results suggest that the completion of cytokinesis is a process requiring high actin polymerization activity. Furthermore, luciferase reporter assays with mycalolide A treatments support the view that the level of globular actin can affect transcription of a serum response gene.


Subject(s)
Actin Cytoskeleton/drug effects , Cytokinesis/drug effects , Marine Toxins/pharmacology , Oxazoles/pharmacology , Actin Cytoskeleton/pathology , Animals , Cell Line, Tumor , HeLa Cells , Humans , Japan , Marine Toxins/chemistry , Oxazoles/chemistry , Oxazoles/isolation & purification , Porifera/chemistry , Transcription, Genetic/drug effects
8.
Methods Mol Biol ; 1946: 259-270, 2019.
Article in English | MEDLINE | ID: mdl-30798562

ABSTRACT

Siderophores are high-affinity iron chelators produced and used by bacteria to prosper under iron-limiting conditions they normally encounter in the environment and hosts. In this chapter, we describe the isolation and purification of the siderophores acinetobactin and baumannoferrin produced by the bacterial pathogen Acinetobacter baumannii using XAD-7 batch adsorption and high-pressure liquid chromatography (HPLC). We also describe chemical tests and biological assays used to detect the presence of catechol and hydroxamate siderophores in culture supernatants, XAD-7 extracts, and HPLC fractions.


Subject(s)
Acinetobacter baumannii/metabolism , Imidazoles/chemistry , Imidazoles/isolation & purification , Oxazoles/chemistry , Oxazoles/isolation & purification , Siderophores/chemistry , Siderophores/isolation & purification , Catechols/chemistry , Catechols/isolation & purification , Chemistry Techniques, Analytical , Chromatography , Chromatography, High Pressure Liquid , Imidazoles/metabolism , Oxazoles/metabolism , Siderophores/metabolism
9.
Mar Drugs ; 17(2)2019 Feb 07.
Article in English | MEDLINE | ID: mdl-30736491

ABSTRACT

Bengazoles A⁻G from the marine sponge Jaspis sp. exhibit potent in vitro antifungal activity against Candida spp. and other pathogenic fungi. The mechanism of action (MOA) of bengazole A was explored in Candida albicans under both liquid culture and surface culture on Mueller-Hinton agar. Pronounced dose-dependent synergistic antifungal activity was observed with bengazole A in the presence of bengamide A, which is also a natural product from Jaspis sp. The MOA of bengazole A was further explored by monitoring the sterol composition of C. albicans in the presence of sub-lethal concentrations of bengazole A. The GCMS of solvent extracts prepared from liquid cultures of C. albicans in the presence of clotrimazole-a clinically approved azole antifungal drug that suppresses ergosterol biosynthesis by the inhibition of 14α-demethylase-showed reduced cellular ergosterol content and increased concentrations of lanosterol and 24-methylenedihydrolanosterol (a shunt metabolite of ergosterol biosynthesis). No change in relative sterol composition was observed when C. albicans was cultured with bengazole A. These results eliminate an azole-like MOA for the bengazoles, and suggest that another as-yet unidentified mechanism is operative.


Subject(s)
Antifungal Agents/pharmacology , Candida albicans/drug effects , Oxazoles/pharmacology , Porifera/chemistry , Animals , Antifungal Agents/isolation & purification , Azoles/chemistry , Azoles/isolation & purification , Azoles/pharmacology , Biological Products/chemistry , Biological Products/isolation & purification , Biological Products/pharmacology , Drug Synergism , Ergosterol/metabolism , Microbial Sensitivity Tests , Molecular Structure , Oxazoles/chemistry , Oxazoles/isolation & purification
10.
J Nat Prod ; 81(9): 2106-2110, 2018 09 28.
Article in English | MEDLINE | ID: mdl-30130105

ABSTRACT

The production of two new heterocyclic peptide isomers, catenulobactins A (1) and B (2), in cultures of Catenuloplanes sp. RD067331 was significantly increased when it was cocultured with a mycolic acid-containing bacterium. The planar structures and absolute configurations of the catenulobactins were determined based on NMR/MS and chiral-phase GC-MS analyses. Catenulobactin B (2) displayed Fe(III)-chelating activity and moderate cytotoxicity against P388 murine leukemia cells.


Subject(s)
Micromonosporaceae/metabolism , Mycolic Acids/analysis , Oxazoles/metabolism , Peptides/metabolism , Animals , Chelating Agents/chemistry , Chelating Agents/isolation & purification , Chelating Agents/metabolism , Chelating Agents/pharmacology , Leukemia P388/drug therapy , Leukemia P388/pathology , Magnetic Resonance Spectroscopy , Mice , Oxazoles/chemistry , Oxazoles/isolation & purification , Oxazoles/pharmacology , Peptides/chemistry , Peptides/isolation & purification , Peptides/pharmacology
11.
J Med Chem ; 60(22): 9275-9289, 2017 11 22.
Article in English | MEDLINE | ID: mdl-29053266

ABSTRACT

Targeted therapies for ER+/PR+ and HER2-amplified breast cancers have improved patient survival, but there are no therapies for triple negative breast cancers (TNBC) that lack expression of estrogen and progesterone receptors (ER/PR), or amplification or overexpression of HER2. Gene expression profiling of TNBC has identified molecular subtypes and representative cell lines. An extract of the Texas native plant Amyris texana was found to have selective activity against MDA-MB-453 cells, a model of the luminal androgen receptor (LAR) subtype of TNBC. Bioassay-guided fractionation identified two oxazole natural products with selective activity against this cell line. Conducted analog synthesis and structure-activity relationship studies provided analogs with more potent and selective activity against two LAR subtype cell line models, culminating in the discovery of compound 30 (CIDD-0067106). Lead compounds discovered have potent and selective antiproliferative activities, and mechanisms of action studies show they inhibit the activity of the mTORC1 pathway.


Subject(s)
Antineoplastic Agents/pharmacology , Imidazoles/pharmacology , Oxazoles/pharmacology , Proline/analogs & derivatives , Receptors, Androgen/metabolism , Triple Negative Breast Neoplasms/drug therapy , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/isolation & purification , Cell Cycle/drug effects , Cell Line, Tumor , Drug Screening Assays, Antitumor , Humans , Imidazoles/chemical synthesis , Imidazoles/isolation & purification , Mechanistic Target of Rapamycin Complex 1/metabolism , Oxazoles/chemical synthesis , Oxazoles/isolation & purification , Proline/chemical synthesis , Proline/isolation & purification , Proline/pharmacology , Proto-Oncogene Proteins c-akt/metabolism , Rutaceae/chemistry , Signal Transduction/drug effects , Structure-Activity Relationship , Triple Negative Breast Neoplasms/metabolism
12.
Food Chem Toxicol ; 110: 94-108, 2017 Dec.
Article in English | MEDLINE | ID: mdl-29017835

ABSTRACT

1,3-Oxazolidine-2-thione derivatives are glucosinolate-related food constituents known to impart (thyreo)toxic properties to some cruciferous vegetables. In this work, 5,5-dimethyl-1,3-oxazolidine-2-thione and (-)-(R)-5-phenyl-1,3-oxazolidine-2-thione, known goitrogens, were isolated from Draba lasiocarpa Rochel (Brassicaceae) and Reseda luteola L. (Resedaceae), respectively, and were fully spectrally characterized. Subsequently, the occurrence of the two 1,3-oxazolidine-2-thiones was verified in six additional taxa out of in total 78 screened Serbian Brassicales taxa. The stereochemistry of 5-phenyl-1,3-oxazolidine-2-thione was inferred from nuclear magnetic resonance experiments with a chiral lanthanide-shift reagent, employed in this work for the first time for this type of compounds. Unexpectedly, during gas chromatography, 5-phenyl-1,3-oxazolidine-2-thione underwent an unreported thermal core isomerization (1,3-oxazolidine-2-thione to 1,3-thiazolidine-2-one). These goitrogenic volatile glucosinolate products were tested for their effect on rat macrophage viability (three assays) and nitric oxide production. It was shown that the compounds displayed different levels of cytotoxicity. All tested compounds caused a significant lactate dehydrogenase leakage, but only (R)-5-phenyl-1,3-oxazolidine-2-thione statistically significantly reduced macrophage mitochondrial activity, whereas the racemic 5-phenyl-1,3-oxazolidine-2-thione and 5,5-dimethyl-1,3-oxazolidine-2-thione had little or no effect. Again only (R)-5-phenyl-1,3-oxazolidine-2-thione exerted nitric oxide production-inhibiting properties, suggesting the higher immunomodulatory potential of this enantiomer compared with its antipode and racemic mixture.


Subject(s)
Brassicaceae/chemistry , Immunologic Factors/chemistry , Oxazoles/chemistry , Plant Extracts/chemistry , Thiones/chemistry , Animals , Chromatography, Gas , Humans , Immunologic Factors/isolation & purification , Immunologic Factors/pharmacology , Inflammation/drug therapy , Magnetic Resonance Spectroscopy , Molecular Structure , Oxazoles/isolation & purification , Oxazoles/pharmacology , Plant Extracts/isolation & purification , Plant Extracts/pharmacology , Rats , Rats, Wistar , Stereoisomerism , Thiones/isolation & purification , Thiones/pharmacology
13.
J Antibiot (Tokyo) ; 70(12): 1142-1145, 2017 Dec.
Article in English | MEDLINE | ID: mdl-28951599

ABSTRACT

Bisoxazolomycin (1), oxazolomycin A2 (2) and oxazolomycin A (3) were identified by physicochemical screening approach from a culture broth of 'Streptomyces subflavus subsp. irumaensis' AM-3603. Compound 2 is a hydrolyzed analog of 3 at the ß-lactone ring, and 1 is a new dimeric analog of 2. Compounds 1 and 2 exhibited less potent antibacterial activity and cytotoxicity than 3, which might be due to lack of the ß-lactone ring.


Subject(s)
Antifungal Agents/pharmacology , Biological Products/pharmacology , Fungi/drug effects , Oxazoles/pharmacology , Pyrrolidinones/pharmacology , Spiro Compounds/pharmacology , Streptomyces/metabolism , Antifungal Agents/chemistry , Antifungal Agents/isolation & purification , Biological Products/chemistry , Biological Products/isolation & purification , Cell Line , Drug Discovery , HL-60 Cells , Humans , Microbial Sensitivity Tests , Oxazoles/isolation & purification , Pyrrolidinones/isolation & purification , Spiro Compounds/isolation & purification
14.
J Biosci Bioeng ; 124(6): 611-617, 2017 Dec.
Article in English | MEDLINE | ID: mdl-28728974

ABSTRACT

The genomes of actinomycetes encode many cryptic novel/useful bioactive compounds, but access to these cryptic secondary metabolites remains limited. Streptomyces avermitilis predominantly produces three polyketide antibiotics (avermectin, filipin, and oligomycin) but has the potential to produce more secondary metabolites based on the number of cryptic biosynthetic gene clusters. Here, we extensively investigated the metabolite profiles of a gene disruptant of AvaR3 (an autoregulator receptor homologue), which is involved in the pleiotropic regulation of antibiotic production and cell morphology. Unlike the wild-type strain, the avaR3 mutant accumulated compound 3 in the culture. The chemical structure of compound 3 was elucidated on the basis of various spectroscopic analyses, and was identified as phthoxazolin A, a cellulose synthesis inhibitor. Bioassays demonstrated that compound 3 exerts growth inhibitory activity against a broad range of plant pathogenic oomycetes. Moreover, unlike avermectin production, phthoxazolin A (3) production was negatively controlled by avenolide, a new type of autoregulator in streptomycetes, through the function of AvaR3. These results suggest that the genetic manipulation of autoregulator receptor homologues would be a valuable tool for the discovery of cryptic bioactive compounds.


Subject(s)
Bacterial Proteins/genetics , Fatty Alcohols/metabolism , Oxazoles/metabolism , Polyunsaturated Alkamides/metabolism , Streptomyces/genetics , Streptomyces/metabolism , Anti-Bacterial Agents/biosynthesis , Anti-Bacterial Agents/metabolism , Bacterial Proteins/metabolism , Biological Assay , Fatty Alcohols/chemistry , Fatty Alcohols/isolation & purification , Fatty Alcohols/pharmacology , Gene Expression Regulation, Bacterial , Ivermectin/analogs & derivatives , Ivermectin/chemistry , Ivermectin/metabolism , Multigene Family , Oomycetes/drug effects , Oxazoles/chemistry , Oxazoles/isolation & purification , Oxazoles/pharmacology , Polyunsaturated Alkamides/chemistry , Polyunsaturated Alkamides/isolation & purification , Polyunsaturated Alkamides/pharmacology , Secondary Metabolism/genetics , Streptomyces/cytology
15.
J Nat Prod ; 80(3): 726-730, 2017 03 24.
Article in English | MEDLINE | ID: mdl-28098996

ABSTRACT

Three new ulapualides (3-5) were isolated from egg masses of the nudibranch Hexabranchus sanguineus. The structures of 3-5 were deduced by analyses of physical and spectroscopic data in comparisons with ulapualides A (1) and B (2). Ulapualide C demonstrated submicromolar cytotoxicity against select NCI cell lines (768-0, DU-145, MDA-MB-231, and A549) with the most potent activity against MDA-MB-231 cells (IC50 0.58 µM). Ulapualides A (1) and B (2) were 2- to 4-fold more potent than 3.


Subject(s)
Gastropoda/chemistry , Ovum/chemistry , Oxazoles/isolation & purification , Animals , Drug Screening Assays, Antitumor , Hawaii , Humans , Marine Biology , Molecular Structure , Oxazoles/chemistry , Oxazoles/pharmacology
16.
Metab Eng ; 40: 80-92, 2017 03.
Article in English | MEDLINE | ID: mdl-28088540

ABSTRACT

Actinomycetes produce a large variety of pharmaceutically active compounds, yet production titers often require to be improved for discovery, development and large-scale manufacturing. Here, we describe a new technique, multiplexed site-specific genome engineering (MSGE) via the 'one integrase-multiple attB sites' concept, for the stable integration of secondary metabolite biosynthetic gene clusters (BGCs). Using MSGE, we achieved five-copy chromosomal integration of the pristinamycin II (PII) BGC in Streptomyces pristinaespiralis, resulting in the highest reported PII titers in flask and batch fermentations (2.2 and 2g/L, respectively). Furthermore, MSGE was successfully extended to develop a panel of powerful Streptomyces coelicolor heterologous hosts, in which up to four copies of the BGCs for chloramphenicol or anti-tumour compound YM-216391 were efficiently integrated in a single step, leading to significantly elevated productivity (2-23 times). Our multiplexed approach holds great potential for robust genome engineering of industrial actinomycetes and novel drug discovery by genome mining.


Subject(s)
Chloramphenicol/biosynthesis , Genetic Enhancement/methods , Genome, Bacterial/genetics , Multigene Family/genetics , Peptides, Cyclic/biosynthesis , Secondary Metabolism/genetics , Streptomyces/physiology , Biosynthetic Pathways/genetics , Chloramphenicol/isolation & purification , Metabolic Engineering/methods , Metabolic Networks and Pathways/genetics , Oxazoles/isolation & purification , Peptides, Cyclic/genetics , Peptides, Cyclic/isolation & purification , Up-Regulation/genetics
17.
J Nat Prod ; 80(1): 2-11, 2017 01 27.
Article in English | MEDLINE | ID: mdl-28029795

ABSTRACT

The isolation and structure elucidation of six new bacterial metabolites [spoxazomicin D (2), oxachelins B and C (4, 5), and carboxamides 6-8] and 11 previously reported bacterial metabolites (1, 3, 9-12a, and 14-18) from Streptomyces sp. RM-14-6 is reported. Structures were elucidated on the basis of comprehensive 1D and 2D NMR and mass spectrometry data analysis, along with direct comparison to synthetic standards for 2, 11, and 12a,b. Complete 2D NMR assignments for the known metabolites lenoremycin (9) and lenoremycin sodium salt (10) were also provided for the first time. Comparative analysis also provided the basis for structural revision of several previously reported putative aziridine-containing compounds [exemplified by madurastatins A1, B1, C1 (also known as MBJ-0034), and MBJ-0035] as phenol-dihydrooxazoles. Bioactivity analysis [including antibacterial, antifungal, cancer cell line cytotoxicity, unfolded protein response (UPR) modulation, and EtOH damage neuroprotection] revealed 2 and 5 as potent neuroprotectives and lenoremycin (9) and its sodium salt (10) as potent UPR modulators, highlighting new functions for phenol-oxazolines/salicylates and polyether pharmacophores.


Subject(s)
Anti-Bacterial Agents/isolation & purification , Anti-Bacterial Agents/pharmacology , Antifungal Agents/isolation & purification , Antifungal Agents/pharmacology , Ethers/chemistry , Ethers/pharmacology , Neuroprotective Agents/isolation & purification , Neuroprotective Agents/pharmacology , Oligopeptides/isolation & purification , Oligopeptides/pharmacology , Oxazoles/isolation & purification , Oxazoles/pharmacology , Peptides/pharmacology , Phenols/chemistry , Phenols/pharmacology , Streptomyces/chemistry , Anti-Bacterial Agents/chemistry , Antifungal Agents/chemistry , Appalachian Region , Coal , Ethers/isolation & purification , Humans , Molecular Structure , Neuroprotective Agents/chemistry , Nuclear Magnetic Resonance, Biomolecular , Oligopeptides/chemistry , Oxazoles/chemistry , Peptides/chemistry , Phenols/isolation & purification
18.
J Nat Prod ; 80(1): 12-18, 2017 01 27.
Article in English | MEDLINE | ID: mdl-28029796

ABSTRACT

The assessment of glycosyl-scanning to expand the molecular and functional diversity of metabolites from the underground coal mine fire-associated Streptomyces sp. RM-14-6 is reported. Using the engineered glycosyltransferase OleD Loki and a 2-chloro-4-nitrophenylglycoside-based screen, six metabolites were identified as substrates of OleD Loki, from which 12 corresponding metabolite glycosides were produced and characterized. This study highlights the first application of the 2-chloro-4-nitrophenylglycoside-based screen toward an unbiased set of unique microbial natural products and the first reported application of the 2-chloro-4-nitrophenylglycoside-based transglycosylation reaction for the corresponding preparative synthesis of target glycosides. Bioactivity analysis (including antibacterial, antifungal, anticancer, and EtOH damage neuroprotection assays) revealed glycosylation to attenuate the neuroprotective potency of 4, while glycosylation of the structurally related inactive spoxazomicin C (3) remarkably invoked neuroprotective activity.


Subject(s)
Antifungal Agents/isolation & purification , Antifungal Agents/pharmacology , Glycosides/chemistry , Neuroprotective Agents/isolation & purification , Neuroprotective Agents/pharmacology , Oligopeptides/isolation & purification , Oligopeptides/pharmacology , Oxazoles/isolation & purification , Oxazoles/pharmacology , Streptomyces/chemistry , Antifungal Agents/chemistry , Glycosylation , Molecular Structure , Neuroprotective Agents/chemistry , Oligopeptides/chemistry , Oxazoles/chemistry
19.
Biosci Biotechnol Biochem ; 81(2): 343-349, 2017 Feb.
Article in English | MEDLINE | ID: mdl-27710213

ABSTRACT

Pyrrolothiazolate formed by the Maillard reaction between l-cysteine and d-glucose has a pyrrolothiazole skeleton as a chromophore. We searched for a Maillard pigment having a pyrrolooxazole skeleton formed from l-threonine or l-serine instead of l-cysteine in the presence of d-glucose. As a result, two novel yellow pigments, named pyrrolooxazolates A and B, were isolated from model solutions of the Maillard reaction containing l-threonine and d-glucose, and l-serine and d-glucose, respectively, and identified as (2R,3S,7aS)-2,3,7,7a-tetrahydro-6-hydroxy-2,5,7a-trimethyl-7-oxo-pyrrolo[2,1-b]oxazole-3-calboxylic acid and (3S,7aS)-2,3,7,7a-tetrahydro-6-hydroxy-5,7a-dimethyl-7-oxo-pyrrolo[2,1-b]oxazole-3-calboxylic acid by instrumental analyses. These compounds were pyrrolooxazole derivatives carrying a carboxy group, and showed the absorption maxima at 300-360 nm under acidic and neutral conditions and at 320-390 nm under alkaline conditions.


Subject(s)
Glucose/chemistry , Maillard Reaction , Oxazoles/chemistry , Pigments, Biological/chemistry , Serine/chemistry , Threonine/chemistry , Oxazoles/analysis , Oxazoles/isolation & purification , Pigments, Biological/analysis , Pigments, Biological/isolation & purification
20.
J Pharm Biomed Anal ; 133: 82-89, 2017 Jan 30.
Article in English | MEDLINE | ID: mdl-27843100

ABSTRACT

Forced Degradation of Deflazacort drug substance in ultraviolet light condition resulted into a number of significant degradation products. Two of these degradation products were found to be unknown during the study and marked as DD-I and DD-II. Thus, the objective of this work is to investigate and identify these two novel degradation products of DFZ. The isolation method for these new degradation products were developed using a new reverse-phase high performance liquid chromatography (HPLC). DD-I and DD-II, eluting at 0.53 and 1.57 relative retention times with respect to Deflazacort (DFZ) peak respectively, were isolated from reaction mass using preparative HPLC and their structures were elucidated using high resolution MS, multidimensional NMR and FTIR spectroscopic techniques. To best of our knowledge, these two degradation products are novel impurities which are not discussed in any form of publication yet.


Subject(s)
Oxazoles/chemistry , Oxazoles/isolation & purification , Pregnenediones/chemistry , Pregnenediones/isolation & purification , Drug Contamination , Molecular Structure , Photolysis
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