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New Structural and Functional Contexts of the Dx[DN]xDG Linear Motif: Insights into Evolution of Calcium-Binding Proteins

机译:Dx [DN] xDG线性母题的新的结构和功能上下文:钙结合蛋白的演变的见解。

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摘要

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.
机译:钙离子(Ca2 +)与蛋白质的结合会对蛋白质的结构和功能产生深远的影响。钙结合的常见作用包括结构稳定和活性调节。众所周知,不同的家族-EF手至少是十二个之一-使用Dx [DN] xDG线性基序以几乎相同的方式结合钙。在这里,描述了四个新颖的​​主题结构上下文。其中之一的嗜热古生枯草杆菌蛋白酶的现有实验数据首次证明了Dx [DN] xDG结合的钙在蛋白质折叠中的作用。在细菌和真菌蛋白质的结构中发现了在β螺旋桨折叠的叶片(这里称为钙叶片)中的基序整合素样嵌入。此外,敏感的数据库搜索表明不同大小的β螺旋桨结构中钙片的共同起源以及这些蛋白质的泛王国分布。有利于基序多重收敛进化的因素似乎包括其普遍的Asp富集性,Asp残基的规则间隔以及尽管单个核苷酸改变也可能发生Asp向Gly的转化以及反之亦然的事实。在Dx [DN] xDG基序的已知结构背景中,目前仅在细胞内大量发现钙片和EF手,这可能是因为较高的细胞外Ca2 +浓度使得更容易固定已获得的新进化基序有用的功能。此处介绍的分析将为仅根据序列信息预测相似的钙结合基序提供信息。

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