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Dx[DN]xDG 线性基序的新结构和功能背景:对钙结合蛋白进化的深入了解。

New structural and functional contexts of the Dx[DN]xDG linear motif: insights into evolution of calcium-binding proteins.

机构信息

Institute of Integrative Biology, University of Liverpool, Liverpool, United Kingdom.

出版信息

PLoS One. 2011;6(6):e21507. doi: 10.1371/journal.pone.0021507. Epub 2011 Jun 24.

Abstract

Binding of calcium ions (Ca²⁺) to proteins can have profound effects on their structure and function. Common roles of calcium binding include structure stabilization and regulation of activity. It is known that diverse families--EF-hands being one of at least twelve--use a Dx[DN]xDG linear motif to bind calcium in near-identical fashion. Here, four novel structural contexts for the motif are described. Existing experimental data for one of them, a thermophilic archaeal subtilisin, demonstrate for the first time a role for Dx[DN]xDG-bound calcium in protein folding. An integrin-like embedding of the motif in the blade of a β-propeller fold--here named the calcium blade--is discovered in structures of bacterial and fungal proteins. Furthermore, sensitive database searches suggest a common origin for the calcium blade in β-propeller structures of different sizes and a pan-kingdom distribution of these proteins. Factors favouring the multiple convergent evolution of the motif appear to include its general Asp-richness, the regular spacing of the Asp residues and the fact that change of Asp into Gly and vice versa can occur though a single nucleotide change. Among the known structural contexts for the Dx[DN]xDG motif, only the calcium blade and the EF-hand are currently found intracellularly in large numbers, perhaps because the higher extracellular concentration of Ca²⁺ allows for easier fixing of newly evolved motifs that have acquired useful functions. The analysis presented here will inform ongoing efforts toward prediction of similar calcium-binding motifs from sequence information alone.

摘要

钙离子(Ca²⁺)与蛋白质的结合会对其结构和功能产生深远影响。钙结合的常见作用包括结构稳定和活性调节。已知至少有十二种 EF 手结构域家族之一使用 Dx[DN]xDG 线性基序以近乎相同的方式结合钙。本文描述了该基序的四个新的结构背景。其中一个结构背景的现有实验数据,即一种嗜热古菌枯草杆菌蛋白酶,首次证明了 Dx[DN]xDG 结合钙在蛋白质折叠中的作用。在细菌和真菌蛋白的β-发夹折叠结构中发现了基序的整合素样嵌入结构,称为钙叶(calcium blade)。此外,敏感的数据库搜索表明,不同大小的β-发夹结构中的钙叶具有共同的起源,并且这些蛋白质在不同的生物界中广泛分布。似乎有多种因素有利于该基序的趋同进化,包括其普遍的 Asp 丰富度、Asp 残基的规则间隔以及 Asp 向 Gly 或反之的变化可以通过单个核苷酸变化发生。在已知的 Dx[DN]xDG 基序结构背景中,只有钙叶和 EF 手目前在细胞内大量存在,这可能是因为细胞外 Ca²⁺浓度较高,更容易固定新进化的具有有用功能的基序。本文的分析将为仅从序列信息预测类似的钙结合基序提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c7e/3123361/218fb3c83b1e/pone.0021507.g001.jpg

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