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fabB(β-酮酰基-酰基载体蛋白合成酶I)基因中的一个错义突变赋予大肠杆菌对硫乳霉素的抗性。

A missense mutation in the fabB (beta-ketoacyl-acyl carrier protein synthase I) gene confers tiolactomycin resistance to Escherichia coli.

作者信息

Jackowski Suzanne, Zhang Yong-Mei, Price Allen C, White Stephen W, Rock Charles O

机构信息

Protein Science Division, Department of Infectious Diseases, St. Jude Children's Research Hospital, Memphis, Tennessee 38105, USA.

出版信息

Antimicrob Agents Chemother. 2002 May;46(5):1246-52. doi: 10.1128/AAC.46.5.1246-1252.2002.

Abstract

Thiolactomycin (TLM) is an antibiotic that inhibits bacterial type II fatty acid synthesis at the condensing enzyme step, and beta-ketoacyl-acyl carrier protein synthase I (FabB) is the relevant target in Escherichia coli. TLM resistance is associated with the upregulation of efflux pumps. Therefore, a tolC knockout mutant (strain ANS1) was constructed to eliminate the contribution of type I secretion systems to TLM resistance. Six independent TLM-resistant clones of strain ANS1 were isolated, and all possessed the same missense mutation in the fabB gene (T1168G) that directed the expression of a mutant protein, FabB(F390V). FabB(F390V) was resistant to TLM in vitro. Leucine is the only other amino acid found at position 390 in nature, and the Staphylococcus aureus FabF protein, which contains this substitution, was sensitive to TLM. Structural modeling predicted that the CG2 methyl group of the valine side chain interfered with the positioning of the C11 methyl on the isoprenoid side chain of TLM in the binary complex, whereas the absence of a bulky methyl group on the leucine side chain permitted TLM binding. These data illustrate that missense mutations that introduce valine at position 390 confer TLM resistance while maintaining the vital catalytic properties of FabB.

摘要

硫内酯霉素(TLM)是一种抗生素,它在缩合酶步骤抑制细菌II型脂肪酸合成,而β-酮酰基-酰基载体蛋白合酶I(FabB)是大肠杆菌中的相关靶点。TLM耐药性与外排泵的上调有关。因此,构建了一个tolC基因敲除突变体(菌株ANS1),以消除I型分泌系统对TLM耐药性的影响。分离出了菌株ANS1的六个独立的TLM耐药克隆,它们在fabB基因中都具有相同的错义突变(T1168G),该突变导致一种突变蛋白FabB(F390V)的表达。FabB(F390V)在体外对TLM具有抗性。亮氨酸是自然界中在390位发现的唯一其他氨基酸,含有这种替代的金黄色葡萄球菌FabF蛋白对TLM敏感。结构建模预测,缬氨酸侧链的CG2甲基在二元复合物中干扰了TLM类异戊二烯侧链上C11甲基的定位,而亮氨酸侧链上没有庞大的甲基则允许TLM结合。这些数据表明,在390位引入缬氨酸的错义突变赋予了TLM抗性,同时保持了FabB的重要催化特性。

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