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β-折叠、β-螺旋及其他β-螺线管蛋白。

Beta-rolls, beta-helices, and other beta-solenoid proteins.

作者信息

Kajava Andrey V, Steven Alasdair C

机构信息

Centre de Recherches de Biochimie Macromoléculaire, CNRS FRE-2593, 1919 Route de Mende, 34293 Montpellier Cedex 5, France.

出版信息

Adv Protein Chem. 2006;73:55-96. doi: 10.1016/S0065-3233(06)73003-0.

Abstract

Beta-rolls and beta-helices belong to a larger group of topologically similar proteins with solenoid folds: because their regular secondary structure elements are exclusively beta-strands, they are referred to as beta-solenoids. The number of beta-solenoids whose structures are known is now large enough to support a systematic analysis. Here we survey the distinguishing structural features of beta-solenoids, also documenting their notable diversity. Appraisal of these structures suggests a classification based on handedness, twist, oligomerization state, and coil shape. In addition, beta-solenoids are distinguished by the number of chains that wind around a common axis: the majority are single-stranded but there is a recently discovered subset of triple-stranded beta-solenoids. This survey has revealed some relationships of the amino acid sequences of beta-solenoids with their structures and functions-in particular, the repetitive character of the coil sequences and conformations that recur in tracts of tandem repeats. We have proposed the term beta-arc for the distinctive turns found in beta-solenoids and beta-arch for the corresponding strand-turn-strand motifs. The evolutionary mechanisms underlying these proteins are also discussed. This analysis has direct implications for sequence-based detection, structural prediction, and de novo design of other beta-solenoid proteins. The abundance of virulence factors, toxins and allergens among beta-solenoids, as well as commonalities of beta-solenoids with amyloid fibrils, imply that this class of folds may have a broader role in human diseases than was previously recognized. Thus, identification of genes with putative beta-solenoid domains promises to be a fertile direction in the search for viable targets in the development of new antibiotics and vaccines.

摘要

β-螺旋和β-折叠属于具有螺线管折叠的拓扑结构相似的较大蛋白质组:由于它们规则的二级结构元件仅为β-链,因此被称为β-螺线管。目前已知结构的β-螺线管数量已足够多,足以支持系统分析。在此,我们综述β-螺线管的显著结构特征,并记录它们显著的多样性。对这些结构的评估表明可基于手性、扭曲、寡聚化状态和螺旋形状进行分类。此外,β-螺线管的区别还在于围绕共同轴缠绕的链的数量:大多数是单链的,但最近发现了一个三链β-螺线管的子集。这项综述揭示了β-螺线管的氨基酸序列与其结构和功能之间的一些关系,特别是螺旋序列和构象在串联重复序列中的重复特征。我们提出了β-弧这一术语来表示在β-螺线管中发现的独特转角,以及β-拱来表示相应的链-转角-链基序。还讨论了这些蛋白质背后的进化机制。该分析对基于序列的检测、结构预测以及其他β-螺线管蛋白的从头设计具有直接意义。β-螺线管中大量的毒力因子、毒素和过敏原,以及β-螺线管与淀粉样纤维的共性,意味着这类折叠在人类疾病中可能具有比以前认识到的更广泛的作用。因此,鉴定具有假定β-螺线管结构域的基因有望成为寻找新型抗生素和疫苗开发中可行靶点的一个富有成果的方向。

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