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细菌对解偶联剂的耐药性。

Bacterial resistance to uncouplers.

作者信息

Lewis K, Naroditskaya V, Ferrante A, Fokina I

机构信息

Department of Biology, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

J Bioenerg Biomembr. 1994 Dec;26(6):639-46. doi: 10.1007/BF00831539.

Abstract

Uncoupler resistance presents a potential challenge to the conventional chemiosmotic coupling mechanism. In E. coli, an adaptive response to uncouplers was found in cell growing under conditions requiring oxidative phosphorylation. It is suggested that uncoupler-resistant mutants described in the earlier literature might represent a constitutive state of expression of this "low energy shock" adaptive response. In the environment, bacteria are confronted by nonclassical uncoupling factors such as organic solvents, heat, and extremes of pH. It is suggested that the low energy shock response will aid the cell in coping with the effects of natural uncoupling factors. The genetic analysis of uncoupler resistance has only recently began, and is yielding interesting and largely unexpected results. In Bacillus subtilis, a mutation in fatty acid desaturase causes an increased content of saturated fatty acids in the membrane and increased uncoupler resistance. The protonophoric efficiency of uncouplers remains unchanged in the mutants, inviting nonorthodox interpretations of the mechanism of resistance. In E. coli, two loci conferring resistance to CCCP and TSA were cloned and were found to encode multidrug resistance pumps. Resistance to one of the uncouplers, TTFB, remained unchanged in strains mutated for the MDRs, suggesting a resistance mechanism different from uncoupler extrusion.

摘要

解偶联剂抗性对传统的化学渗透偶联机制构成了潜在挑战。在大肠杆菌中,发现在需要氧化磷酸化的条件下生长的细胞对解偶联剂有适应性反应。有人提出,早期文献中描述的解偶联剂抗性突变体可能代表了这种“低能冲击”适应性反应的组成型表达状态。在环境中,细菌会面临非经典的解偶联因子,如有机溶剂、热和极端pH值。有人认为,低能冲击反应将有助于细胞应对天然解偶联因子的影响。解偶联剂抗性的遗传分析直到最近才开始,并且正在产生有趣且大多出乎意料的结果。在枯草芽孢杆菌中,脂肪酸去饱和酶的突变会导致膜中饱和脂肪酸含量增加和解偶联剂抗性增强。突变体中解偶联剂的质子载体效率保持不变,这引发了对抗性机制的非传统解释。在大肠杆菌中,克隆了两个赋予对CCCP和TSA抗性的基因座,发现它们编码多药抗性泵。在因多药抗性发生突变的菌株中,对其中一种解偶联剂TTFB的抗性保持不变,这表明存在一种不同于解偶联剂外排的抗性机制。

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