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放线菌产生的羊毛硫抗生素及其潜在应用(综述)

Lantibiotics produced by Actinobacteria and their potential applications (a review).

作者信息

Gomes Karen Machado, Duarte Rafael Silva, de Freire Bastos Maria do Carmo

机构信息

Departamento de Microbiologia Médica, Instituto de Microbiologia Paulo de Góes, UFRJ, Rio de Janeiro, Brazil.

Departamento de Microbiologia Geral, Instituto de Microbiologia Paulo de Góes, UFRJ, Rio de Janeiro, Brazil.

出版信息

Microbiology (Reading). 2017 Feb;163(2):109-121. doi: 10.1099/mic.0.000397.

Abstract

The phylum Actinobacteria, which comprises a great variety of Gram-positive bacteria with a high G+C content in their genomes, is known for its large production of bioactive compounds, including those with antimicrobial activity. Among the antimicrobials, bacteriocins, ribosomally synthesized peptides, represent an important arsenal of potential new drugs to face the increasing prevalence of resistance to antibiotics among microbial pathogens. The actinobacterial bacteriocins form a heterogeneous group of substances that is difficult to adapt to most proposed classification schemes. However, recent updates have accommodated efficiently the diversity of bacteriocins produced by this phylum. Among the bacteriocins, the lantibiotics represent a source of new antimicrobials to control infections caused mainly by Gram-positive bacteria and with a low propensity for resistance development. Moreover, some of these compounds have additional biological properties, exhibiting activity against viruses and tumour cells and having also potential to be used in blood pressure or inflammation control and in pain relief. Thus, lantibiotics already described in Actinobacteria exhibit potential practical applications in medical settings, food industry and agriculture, with examples at different stages of pre-clinical and clinical trials.

摘要

放线菌门包含各种各样基因组中G+C含量高的革兰氏阳性菌,以大量产生生物活性化合物而闻名,包括具有抗菌活性的化合物。在抗菌剂中,细菌素,即核糖体合成的肽,是面对微生物病原体中抗生素耐药性日益普遍的潜在新药的重要武器库。放线菌细菌素构成了一组异质性物质,难以适应大多数提议的分类方案。然而,最近的更新有效地适应了该门产生细菌素的多样性。在细菌素中,羊毛硫抗生素是控制主要由革兰氏阳性菌引起的感染且耐药性发展倾向较低的新型抗菌剂来源。此外,这些化合物中的一些具有额外的生物学特性,表现出对病毒和肿瘤细胞的活性,并且还具有用于控制血压或炎症以及缓解疼痛的潜力。因此,放线菌中已描述的羊毛硫抗生素在医学、食品工业和农业中展现出潜在的实际应用,在临床前和临床试验的不同阶段都有实例。

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