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通过CalC自我牺牲实现对烯二炔抗肿瘤抗生素的抗性。

Resistance to enediyne antitumor antibiotics by CalC self-sacrifice.

作者信息

Biggins John B, Onwueme Kenolisa C, Thorson Jon S

机构信息

Laboratory for Biosynthetic Chemistry, Pharmaceutical Sciences Division, School of Pharmacy, University of Wisconsin-Madison, 777 Highland Avenue, Madison, WI 53705, USA.

出版信息

Science. 2003 Sep 12;301(5639):1537-41. doi: 10.1126/science.1086695.

Abstract

Antibiotic self-resistance mechanisms, which include drug elimination, drug modification, target modification, and drug sequestration, contribute substantially to the growing problem of antibiotic resistance among pathogenic bacteria. Enediynes are among the most potent naturally occurring antibiotics, yet the mechanism of resistance to these toxins has remained a mystery. We characterize an enediyne self-resistance protein that reveals a self-sacrificing paradigm for resistance to highly reactive antibiotics, and thus another opportunity for nonpathogenic or pathogenic bacteria to evade extremely potent small molecules.

摘要

抗生素自身抗性机制,包括药物消除、药物修饰、靶点修饰和药物隔离,在很大程度上导致了病原菌中抗生素耐药性这一日益严重的问题。烯二炔是自然界中最有效的抗生素之一,然而对这些毒素的耐药机制仍是个谜。我们鉴定了一种烯二炔自身抗性蛋白,它揭示了一种对高反应性抗生素产生抗性的自我牺牲模式,从而为非病原菌或病原菌逃避极具效力的小分子提供了另一个机会。

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