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确定微生物菌素的结构和作用模式,微生物菌素是一种对多重耐药病原体有效的强力羊毛硫抗生素。

Determining the structure and mode of action of microbisporicin, a potent lantibiotic active against multiresistant pathogens.

作者信息

Castiglione Franca, Lazzarini Ameriga, Carrano Lucia, Corti Emiliana, Ciciliato Ismaela, Gastaldo Luciano, Candiani Paolo, Losi Daniele, Marinelli Flavia, Selva Enrico, Parenti Francesco

机构信息

Vicuron Pharmaceuticals, Via R. Lepetit 34, 21040 Gerenzano, Varese, Italy.

出版信息

Chem Biol. 2008 Jan;15(1):22-31. doi: 10.1016/j.chembiol.2007.11.009.

Abstract

Antibiotics blocking bacterial cell wall assembly (beta-lactams and glycopeptides) are facing a challenge from the progressive spread of resistant pathogens. Lantibiotics are promising candidates to alleviate this problem. Microbisporicin, the most potent antibacterial among known comparable lantibiotics, was discovered during a screening applied to uncommon actinomycetes. It is produced by Microbispora sp. as two similarly active and structurally related polypeptides (A1, 2246-Da and A2, 2230-Da) of 24 amino acids linked by 5 intramolecular thioether bridges. Microbisporicin contains two posttranslational modifications that have never been reported previously in lantibiotics: 5-chloro-trypthopan and mono- (in A2) or bis-hydroxylated (in A1) proline. Consistent with screening criteria, microbisporicin selectively blocks peptidoglycan biosynthesis, causing cytoplasmic UDP-linked precursor accumulation. Considering its spectrum of activity and its efficacy in vivo, microbisporicin represents a promising antibiotic to treat emerging infections.

摘要

阻碍细菌细胞壁组装的抗生素(β-内酰胺类和糖肽类)正面临着耐药病原体不断扩散带来的挑战。羊毛硫抗生素有望缓解这一问题。在对罕见放线菌进行的筛选过程中发现了微生物双孢菌素,它是已知同类羊毛硫抗生素中抗菌活性最强的。它由双孢菌属产生,是两种活性相似且结构相关的24个氨基酸的多肽(A1,2246道尔顿和A2,2230道尔顿),通过5个分子内硫醚桥相连。微生物双孢菌素含有两种翻译后修饰,这在羊毛硫抗生素中此前从未有过报道:5-氯色氨酸和单羟基化(在A2中)或双羟基化(在A1中)的脯氨酸。符合筛选标准的是,微生物双孢菌素选择性地阻断肽聚糖生物合成,导致细胞质中与UDP相连的前体积累。考虑到其活性谱及其体内疗效,微生物双孢菌素是一种治疗新出现感染的有前景的抗生素。

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