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两种ABC转运蛋白和一种周质金属伴侣参与反硝化副球菌的锌摄取过程。

Two ABC Transporters and a Periplasmic Metallochaperone Participate in Zinc Acquisition in Paracoccus denitrificans.

作者信息

Neupane Durga P, Kumar Santosh, Yukl Erik T

机构信息

Department of Chemistry and Biochemistry , New Mexico State University , Las Cruces , New Mexico 88003 , United States.

Department of Biological Sciences , University of Texas at Dallas , Richardson , Texas 75080 , United States.

出版信息

Biochemistry. 2019 Jan 15;58(2):126-136. doi: 10.1021/acs.biochem.8b00854. Epub 2018 Oct 30.

Abstract

Bacteria must acquire the essential element zinc from extremely limited environments, and this function is performed largely by ATP binding cassette (ABC) transporters. These systems rely on a periplasmic or extracellular solute binding protein (SBP) to bind zinc specifically with a high affinity and deliver it to the membrane permease for import into the cytoplasm. However, zinc acquisition systems in bacteria may be more complex, involving multiple transporters and other periplasmic or extracellular zinc binding proteins. Here we describe the zinc acquisition functions of two zinc SBPs (ZnuA and AztC) and a novel periplasmic metallochaperone (AztD) in Paracoccus denitrificans. ZnuA was characterized in vitro and demonstrated to bind as many as 5 zinc ions with a high affinity. It does not interact with AztD, in contrast to what has been demonstrated for AztC, which is able to acquire a single zinc ion through associative transfer from AztD. Deletions of the corresponding genes singly and in combination show that either AztC or ZnuA is sufficient and essential for robust growth in zinc-limited media. Although AztD cannot support transport of zinc into the cytoplasm, it likely functions to store zinc in the periplasm for transfer through the AztABCD system.

摘要

细菌必须从极其有限的环境中获取必需元素锌,而这一功能主要由ATP结合盒(ABC)转运蛋白来执行。这些系统依靠周质或细胞外溶质结合蛋白(SBP)以高亲和力特异性结合锌,并将其递送至膜通透酶以导入细胞质。然而,细菌中的锌获取系统可能更为复杂,涉及多种转运蛋白以及其他周质或细胞外锌结合蛋白。在此,我们描述了反硝化副球菌中两种锌SBP(ZnuA和AztC)以及一种新型周质金属伴侣蛋白(AztD)的锌获取功能。ZnuA在体外得到了表征,证明其能够以高亲和力结合多达5个锌离子。与AztC不同,它不与AztD相互作用,AztC能够通过从AztD的缔合转移获取单个锌离子。单独或组合缺失相应基因表明,AztC或ZnuA对于在锌限制培养基中的强劲生长而言都是足够且必需的。尽管AztD不能支持锌转运至细胞质中,但它可能起到在周质中储存锌以便通过AztABCD系统进行转移的作用。

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