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CzcP是一种新型外排系统,有助于嗜金属贪铜菌CH34对过渡金属产生抗性。

CzcP is a novel efflux system contributing to transition metal resistance in Cupriavidus metallidurans CH34.

作者信息

Scherer Judith, Nies Dietrich H

机构信息

Molecular Microbiology, Institute for Biology/Microbiology, Martin-Luther-University, Halle-Wittenberg, Germany.

出版信息

Mol Microbiol. 2009 Aug;73(4):601-21. doi: 10.1111/j.1365-2958.2009.06792.x. Epub 2009 Jul 7.

Abstract

Cupriavidus metallidurans CH34 possesses a multitude of metal efflux systems. Here, the function of the novel P(IB4)-type ATPase CzcP is characterized, which belongs to the plasmid pMOL30-mediated cobalt-zinc-cadmium (Czc) resistance system. Contribution of CzcP to transition metal resistance in C. metallidurans was compared with that of three P(IB2)-type ATPases (CadA, ZntA, PrbA) and to other efflux proteins by construction and characterization of multiple deletion mutants. These data also yielded additional evidence for an export of metal cations from the periplasm to the outside of the cell rather than from the cytoplasm to the outside. Moreover, metal-sensitive Escherichia coli strains were functionally substituted in trans with CzcP and the three P(IB2)-type ATPases. Metal transport kinetics performed with inside-out vesicles identified the main substrates for these four exporters, the K(m) values and apparent turn-over numbers. In combination with the mutant data, transport kinetics indicated that CzcP functions as 'resistance enhancer': this P(IB4)-type ATPase exports transition metals Zn(2+), Cd(2+) and Co(2+) much more rapidly than the three P(IB2)-type proteins. However, a basic resistance level has to be provided by the P(IB2)-type efflux pumps because CzcP may not be able to reach all different speciations of these metals in the cytoplasm.

摘要

金属抗性贪铜菌CH34拥有多种金属外排系统。在此,对新型P(IB4)型ATP酶CzcP的功能进行了表征,它属于质粒pMOL30介导的钴-锌-镉(Czc)抗性系统。通过构建和表征多个缺失突变体,将CzcP对金属抗性贪铜菌中过渡金属抗性的贡献与三种P(IB2)型ATP酶(CadA、ZntA、PrbA)以及其他外排蛋白的贡献进行了比较。这些数据还为金属阳离子从周质输出到细胞外而非从细胞质输出到细胞外提供了额外证据。此外,用CzcP和三种P(IB2)型ATP酶对金属敏感的大肠杆菌菌株进行了功能互补。用内翻囊泡进行的金属转运动力学确定了这四种转运蛋白的主要底物、米氏常数(Km)值和表观周转数。结合突变体数据,转运动力学表明CzcP起着“抗性增强剂”的作用:这种P(IB4)型ATP酶比三种P(IB2)型蛋白更快地输出过渡金属锌离子(Zn2+)、镉离子(Cd2+)和钴离子(Co2+)。然而,P(IB2)型外排泵必须提供基本的抗性水平,因为CzcP可能无法触及细胞质中这些金属的所有不同形态。

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