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细胞内铜转运蛋白的功能、结构及机制

Function, structure, and mechanism of intracellular copper trafficking proteins.

作者信息

Huffman D L, O'Halloran T V

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208-3113, USA.

出版信息

Annu Rev Biochem. 2001;70:677-701. doi: 10.1146/annurev.biochem.70.1.677.

Abstract

Genetic, biochemical, and spectroscopic studies have established a new function for an intracellular protein, i.e., guiding and inserting a copper cofactor into the active site of a target enzyme. Studies of these new proteins have revealed a fundamental aspect of copper physiology, namely the vast overcapacity of the cytoplasm for copper sequestration. This finding framed the mechanistic, energetic, and structural aspects of intracellular copper trafficking proteins. One hallmark of the copper chaperones is the similarity of the protein fold between the chaperone and its target enzyme. The surface residues presented by each partner, however, are quite different, and some initial findings concerning the complementarity of these interfaces have led to mechanistic insights. The copper chaperones appear to lower the activation barrier for metal transfer into specific protein-binding sites. The manner in which they facilitate metal insertion appears to involve a docking of the metal donor and acceptor sites in close proximity to one another. Although the intimate mechanism is still open, it appears that a low activation barrier for metal transfer is achieved by a network of coordinate-covalent, electrostatic, and hydrogen bonding interactions in the vicinity of the metal-binding site itself.

摘要

遗传学、生物化学和光谱学研究确定了一种细胞内蛋白质的新功能,即引导铜辅因子并将其插入目标酶的活性位点。对这些新蛋白质的研究揭示了铜生理学的一个基本方面,即细胞质对铜螯合的巨大过剩能力。这一发现构建了细胞内铜转运蛋白的机制、能量和结构方面的框架。铜伴侣蛋白的一个标志是伴侣蛋白与其目标酶之间蛋白质折叠的相似性。然而,每个伴侣蛋白呈现的表面残基却大不相同,关于这些界面互补性的一些初步发现带来了机制上的见解。铜伴侣蛋白似乎降低了金属转移到特定蛋白质结合位点的活化能垒。它们促进金属插入的方式似乎涉及金属供体和受体位点彼此紧密靠近的对接。尽管具体机制仍未明确,但似乎通过金属结合位点附近的配位共价、静电和氢键相互作用网络实现了较低的金属转移活化能垒。

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