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金属蛋白质组学、金属蛋白质组和金属蛋白质的注释。

Metalloproteomics, metalloproteomes, and the annotation of metalloproteins.

机构信息

Department of Preventive Medicine and Community Health, The University of Texas Medical Branch, 700 Harborside Drive, Galveston, TX 77551, USA.

出版信息

Metallomics. 2010 Feb;2(2):117-25. doi: 10.1039/b915804a. Epub 2009 Oct 19.

Abstract

Metalloproteomics includes approaches that address the expression of metalloproteins and their changes in biological time and space. Metalloproteomes are investigated by a combination of approaches. Experimental approaches include structural genomics, which provides insights into the architecture of metal-binding sites in metalloproteins and establishes ligand signatures from the types and spacings of the metal ligands in the protein sequence. Theoretical approaches employ these ligand signatures as templates for homology searches in sequence databases. In this way, the number of metalloproteins in the iron, copper, and zinc metalloproteomes in various phyla of life has been estimated. Yet, manganese metalloproteomes remain poorly defined. Metals have catalytic and structural functions in proteins. However, additional functions have evolved. Proteins that control metal homeostasis and proteins that are metal-regulated bind metal ions transiently and are generally not accounted for in estimates from bioinformatics. Thus, metalloproteomes are dynamic and likely to be larger than present estimates suggest. This account discusses the assignment of transition metals in metalloproteins and the ensuing issues facing analytical chemists and structural and computational biologists. Biological and chemical selectivities render metal selection by metalloproteins either more stringent or less stringent depending on the metal homeostatic system of the organism, the subcellular location of the protein, and environmental factors. Failure to recognize the principles of metal utilization has led to assigning the wrong metal in metalloproteins and has missed some of the regulatory functions of transition metal ions.

摘要

金属蛋白质组学包括研究金属蛋白质的表达及其在生物时间和空间上变化的方法。金属蛋白质组学通过多种方法的结合来研究。实验方法包括结构基因组学,它提供了对金属结合位点在金属蛋白质中的结构的深入了解,并从蛋白质序列中金属配体的类型和间距建立配体特征。理论方法将这些配体特征用作序列数据库中同源搜索的模板。通过这种方式,已经估计了生命各个门的铁、铜和锌金属蛋白质组中的金属蛋白质的数量。然而,锰金属蛋白质组仍然定义不清。金属在蛋白质中具有催化和结构功能。然而,又进化出了额外的功能。控制金属动态平衡的蛋白质和受金属调控的蛋白质会暂时结合金属离子,通常不会在生物信息学的估计中考虑到这些蛋白质。因此,金属蛋白质组是动态的,而且可能比目前的估计要大。本综述讨论了金属蛋白质中过渡金属的分配以及分析化学家、结构和计算生物学家所面临的问题。生物和化学选择性使得金属蛋白质对金属的选择要么更严格,要么更宽松,这取决于生物体的金属动态平衡系统、蛋白质的亚细胞位置和环境因素。未能认识到金属利用的原则导致了在金属蛋白质中分配了错误的金属,并错过了一些过渡金属离子的调节功能。

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