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最小功能位点允许对蛋白质中的锌位点进行分类。

Minimal functional sites allow a classification of zinc sites in proteins.

机构信息

Magnetic Resonance Center, University of Florence, Sesto Fiorentino, Italy.

出版信息

PLoS One. 2011;6(10):e26325. doi: 10.1371/journal.pone.0026325. Epub 2011 Oct 17.

Abstract

Zinc is indispensable to all forms of life as it is an essential component of many different proteins involved in a wide range of biological processes. Not differently from other metals, zinc in proteins can play different roles that depend on the features of the metal-binding site. In this work, we describe zinc sites in proteins with known structure by means of three-dimensional templates that can be automatically extracted from PDB files and consist of the protein structure around the metal, including the zinc ligands and the residues in close spatial proximity to the ligands. This definition is devised to intrinsically capture the features of the local protein environment that can affect metal function, and corresponds to what we call a minimal functional site (MFS). We used MFSs to classify all zinc sites whose structures are available in the PDB and combined this classification with functional annotation as available in the literature. We classified 77% of zinc sites into ten clusters, each grouping zinc sites with structures that are highly similar, and an additional 16% into seven pseudo-clusters, each grouping zinc sites with structures that are only broadly similar. Sites where zinc plays a structural role are predominant in eight clusters and in two pseudo-clusters, while sites where zinc plays a catalytic role are predominant in two clusters and in five pseudo-clusters. We also analyzed the amino acid composition of the coordination sphere of zinc as a function of its role in the protein, highlighting trends and exceptions. In a period when the number of known zinc proteins is expected to grow further with the increasing awareness of the cellular mechanisms of zinc homeostasis, this classification represents a valuable basis for structure-function studies of zinc proteins, with broad applications in biochemistry, molecular pharmacology and de novo protein design.

摘要

锌是所有生命形式所必需的,因为它是许多不同蛋白质的重要组成部分,这些蛋白质参与广泛的生物过程。与其他金属不同,蛋白质中的锌可以发挥不同的作用,这取决于金属结合位点的特征。在这项工作中,我们通过可以从 PDB 文件中自动提取的三维模板来描述具有已知结构的蛋白质中的锌位点,这些模板由金属周围的蛋白质结构组成,包括锌配体和与配体空间接近的残基。这种定义旨在内在地捕获可能影响金属功能的局部蛋白质环境的特征,这与我们所称的最小功能位点(MFS)相对应。我们使用 MFS 对所有结构可在 PDB 中获得的锌位点进行分类,并将这种分类与文献中提供的功能注释相结合。我们将 77%的锌位点分类为十个簇,每个簇都包含结构高度相似的锌位点,另外 16%的锌位点分类为七个伪簇,每个簇都包含结构仅大致相似的锌位点。在八个簇和两个伪簇中,锌发挥结构作用的位点占主导地位,而在两个簇和五个伪簇中,锌发挥催化作用的位点占主导地位。我们还分析了锌的配位球的氨基酸组成作为其在蛋白质中的作用的函数,突出了趋势和例外。在越来越多的人意识到锌稳态的细胞机制的时期,这种分类为锌蛋白的结构-功能研究提供了有价值的基础,在生物化学、分子药理学和从头蛋白质设计等领域有广泛的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c0b2/3197139/126d60cda567/pone.0026325.g001.jpg

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