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链霉菌属细胞外铜转运途径的结构和机制研究进展。

Structural and mechanistic insights into an extracytoplasmic copper trafficking pathway in Streptomyces lividans.

机构信息

*School of Biological Sciences, University of Essex, Wivenhoe Park, Colchester CO4 3SQ, U.K.

†Molecular Biotechnology, Institute of Biology, Sylvius Laboratory, Leiden University, PO Box 9505, 2300RA Leiden, The Netherlands.

出版信息

Biochem J. 2014 May 1;459(3):525-38. doi: 10.1042/BJ20140017.

Abstract

In Streptomyces lividans an extracytoplasmic copper-binding Sco protein plays a role in two unlinked processes: (i) initiating a morphological development switch and (ii) facilitating the co-factoring of the CuA domain of CcO (cytochrome c oxidase). How Sco obtains copper once secreted to the extracytoplasmic environment is unknown. In the present paper we report on a protein possessing an HX₆MX₂₁HXM motif that binds a single cuprous ion with subfemtomolar affinity. High-resolution X-ray structures of this extracytoplasmic copper chaperone-like protein (ECuC) in the apo- and Cu(I)-bound states reveal that the latter possesses a surface-accessible cuprous-ion-binding site located in a dish-shaped region of β-sheet structure. A cuprous ion is transferred under a favourable thermodynamic gradient from ECuC to Sco with no back transfer occurring. The ionization properties of the cysteine residues in the Cys⁸⁶xxxCys⁹⁰ copper-binding motif of Sco, together with their positional locations identified from an X-ray structure of Sco, suggests a role for Cys⁸⁶ in initiating an inter-complex ligand-exchange reaction with Cu(I)-ECuC. Generation of the genetic knockouts, Δsco, Δecuc and Δsco/ecuc, and subsequent in vivo assays lend support to the existence of a branched extracytoplasmic copper-trafficking pathway in S. lividans. One branch requires both Sco and to a certain extent ECuC to cofactor the CuA domain, whereas the other uses only Sco to deliver copper to a cuproenzyme to initiate morphological development.

摘要

在链霉菌中,一种细胞外铜结合 Sco 蛋白在两个不相关的过程中发挥作用:(i)启动形态发育开关,(ii)促进 CcO(细胞色素 c 氧化酶)CuA 结构域的共因子化。Sco 一旦分泌到细胞外环境中,如何获得铜尚不清楚。在本研究中,我们报道了一种具有 HX₆MX₂₁HXM 基序的蛋白,该基序能够以亚皮摩尔亲和力结合单个亚铜离子。该细胞外铜伴侣样蛋白(ECuC)的apo 和 Cu(I)-结合状态的高分辨率 X 射线结构揭示,后者具有一个位于 β-折叠结构盘状区域的表面可及的亚铜离子结合位点。在没有反向转移的情况下,在有利的热力学梯度下,铜从 ECuC 转移到 Sco。Sco 中铜结合基序 Cys⁸⁶xxxCys⁹⁰中的半胱氨酸残基的离子化性质及其在 Sco X 射线结构中的位置表明 Cys⁸⁶在与 Cu(I)-ECuC 进行复合物间配体交换反应中起作用。Δsco、Δecuc 和 Δsco/ecuc 基因敲除的产生,以及随后的体内测定,支持了链霉菌中存在分支的细胞外铜转运途径。一个分支需要 Sco 和 ECuC 共同辅助 CuA 结构域,而另一个分支仅使用 Sco 将铜递送至杯状酶以启动形态发育。

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