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周质镍浓度对周质镍外流泵表达的调控

Control of expression of a periplasmic nickel efflux pump by periplasmic nickel concentrations.

作者信息

Grass Gregor, Fricke Beate, Nies Dietrich H

机构信息

Institut für Mikrobiologie, Martin-Luther-Universität Halle-Wittenberg, Kurt-Mothes-Str. 3, 06099, Halle, Germany, European Community.

出版信息

Biometals. 2005 Aug;18(4):437-48. doi: 10.1007/s10534-005-3718-6.

Abstract

There is accumulating evidence that transenvelope efflux pumps of the resistance, nodulation, cell division protein family (RND) are excreting toxic substances from the periplasm across the outer membrane directly to the outside. This would mean that resistance of Gram-negative bacteria to organic toxins and heavy metals is in fact a two-step process: one set of resistance factors control the concentration of a toxic substance in the periplasm, another one that in the cytoplasm. Efficient periplasmic detoxification requires periplasmic toxin sensing and transduction of this signal into the cytoplasm to control expression of the periplasmic detoxification system. Such a signal transduction system was analyzed using the Cnr nickel resistance system from Cupriavidus (Wautersia, Ralstonia, Alcaligenes) metallidurans strain CH34. Resistance is based on nickel efflux mediated by the CnrCBA efflux pump encoded by the cnrYHXCBAT metal resistance determinant. The products of the three genes cnrYXH transcriptionally regulate expression of cnr. CnrY and CnrX are membrane-bound proteins probably functioning as anti sigma factors while CnrH is a cnr-specific extracytoplasmic functions (ECF) sigma factors. Experimental data provided here indicate a signal transduction chain leading from nickel in the periplasm to transcription initiation at the cnr promoters cnrYp and cnrCp, which control synthesis of the nickel efflux pump CnrCBA.

摘要

越来越多的证据表明,耐药、结瘤、细胞分裂蛋白家族(RND)的跨包膜外排泵正将周质中的有毒物质直接穿过外膜排泄到外部。这意味着革兰氏阴性菌对有机毒素和重金属的耐药性实际上是一个两步过程:一组耐药因子控制周质中有毒物质的浓度,另一组控制细胞质中的浓度。有效的周质解毒需要周质毒素感应并将该信号传导至细胞质以控制周质解毒系统的表达。使用来自金属抗性土壤杆菌(沃氏菌属、罗尔斯通氏菌属、产碱菌属)菌株CH34的Cnr镍抗性系统分析了这样一个信号转导系统。抗性基于由金属抗性决定簇cnrYHXCBAT编码的CnrCBA外排泵介导的镍外排。三个基因cnrYXH的产物转录调控cnr的表达。CnrY和CnrX是膜结合蛋白,可能作为抗σ因子发挥作用,而CnrH是一种cnr特异性胞外功能(ECF)σ因子。此处提供的实验数据表明存在一条从周质中的镍到cnr启动子cnrYp和cnrCp处转录起始的信号转导链,这些启动子控制镍外排泵CnrCBA的合成。

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