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通过 tridecaptin M 基因簇合成的天然变体的纯化及其该类抗生素的体外药物动力学研究。

Purification and biological activity of natural variants synthesized by tridecaptin M gene cluster and in vitro drug-kinetics of this antibiotic class.

机构信息

Clinical Microbiology & Bioactive Screening Laboratory, CSIR-Institute of Microbial Technology, Sector -39A, Chandigarh, 160036, India.

出版信息

Sci Rep. 2019 Dec 11;9(1):18870. doi: 10.1038/s41598-019-54716-8.

Abstract

The flexibility of the adenylation domains of non-ribosomal peptide synthetases (NRPSs) to different substrates creates a diversity of structurally similar peptides. In the present study, we investigated the antimicrobial activity of different natural variants synthesized by tridecaptin M gene cluster and performed the in vitro drug kinetics on this class. The natural variants were isolated and characterized using MALDI-MS and tandem mass spectrometry. All the peptides were studied for their antimicrobial activity in different pathogens, including colistin-resistant bacteria, and for haemolytic activity. Furthermore, in vitro drug kinetics was performed with tridecaptin M (or M, the major product of the gene cluster). The natural variants displayed a varying degree of bioactivity with M showing the most potent antibacterial activity (MIC, 1-8 µg/ml), even against A. baumannii and P. aeruginosa strains. The in vitro kinetic studies revealed that tridecaptin M at a concentration of 16 µg/ml eradicated the bacteria completely in high-density culture. The compound demonstrated desirable post-antibiotic effect after two-hour exposure at MIC concentration. We also observed the reversal of resistance to this class of antibiotics in the presence of carbonyl cyanide m-chlorophenyl hydrazine (CCCP). Altogether, the study demonstrated that tridecaptins are an excellent drug candidate against drug-resistant Gram-negative bacteria. Future studies are required to design a superior tridecaptin by investigating the interactions of different natural variants with the target.

摘要

非核糖体肽合成酶 (NRPSs) 的腺苷酸结构域对不同底物的灵活性产生了结构相似的肽的多样性。在本研究中,我们研究了 tridecaptin M 基因簇合成的不同天然变体的抗菌活性,并对该类化合物进行了体外药物动力学研究。使用 MALDI-MS 和串联质谱法对天然变体进行了分离和表征。研究了所有肽在不同病原体中的抗菌活性,包括对粘菌素耐药的细菌,以及溶血活性。此外,还对 tridecaptin M(或基因簇的主要产物 M)进行了体外药物动力学研究。天然变体表现出不同程度的生物活性,其中 M 表现出最强的抗菌活性(MIC,1-8μg/ml),甚至对鲍曼不动杆菌和铜绿假单胞菌菌株也有作用。体外动力学研究表明,在高浓度培养物中,浓度为 16μg/ml 的 tridecaptin M 可完全消灭细菌。在 MIC 浓度下暴露两小时后,该化合物表现出良好的抗生素后效应。我们还观察到在羰基氰化物 m-氯苯腙(CCCP)存在下,该类抗生素耐药性的逆转。总之,该研究表明 tridecaptin 是一种针对耐药物革兰氏阴性菌的优秀药物候选物。需要进一步的研究来设计一种通过研究不同天然变体与靶标的相互作用而具有优势的 tridecaptin。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0885/6906472/fcf19983a7b9/41598_2019_54716_Fig1_HTML.jpg

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