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Crystal Structures of Xanthomonas Small Heat Shock Protein Provide a Structural Basis for an Active Molecular Chaperone Oligomer

机译:Xanthomonas小热激蛋白的晶体结构为活性分子伴侣低聚物提供了结构基础。

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摘要

Small heat shock proteins (sHsps) are ubiquitous low-molecular-weight chaperones that prevent protein aggregation under cellular stresses. sHsps contain a structurally conserved alpha-crystallin domain (ACD) of about 100 amino acid residues flanked by varied N- and C-terminal extensions and usually exist as oligomers. Oligomerization is important for the biological functions of most sHsps. However, the active oligomeric states of sHsps are not defined yet. We present here crystal structures (up to 1.65 angstrom resolution) of the sHspA from the plant pathogen Xanthomonas (XaHspA). XaHspA forms closed or open trimers of dimers (hexamers) in crystals but exists predominantly as 36mers in solution as estimated by size-exclusion chromatography. The XaHspA monomer structures mainly consist of alpha-crystallin domain with disordered N- and C-terminal extensions, indicating that the extensions are flexible and not essential for the formation of dimers and 36mers. Under reducing conditions where a-lactalbumin (LA) unfolds and aggregates, XaHspA 36mers formed complexes with one LA per XaHspA dimer. Based on XaHspA dimer dimer interactions observed in crystals, we propose that XaHspA 36mers have four possible conformations, but only XaHspA 36merB, which is formed by open hexamers in 12mer-6mer-6mer-12mer with protruding dimers accessible for substrate (unfolding protein) binding, can bind to 18 reduced LA molecules. Together, our results unravel the structural basis of an active sHsp oligomer. (C) 2011 Elsevier Ltd. All rights reserved.
机译:小型热激蛋白(sHsps)是普遍存在的低分子量分子伴侣,可在细胞压力下阻止蛋白质聚集。 sHsps包含约100个氨基酸残基的结构保守的α-晶状蛋白结构域(ACD),其侧翼为N和C端不同的延伸部分,通常以低聚物形式存在。寡聚化对于大多数sHsps的生物学功能很重要。但是,尚未定义sHsps的活性低聚状态。我们在这里介绍来自植物病原体Xanthomonas(XaHspA)的sHspA的晶体结构(高达1.65埃分辨率)。 XaHspA在晶体中形成封闭的或开放的二聚体(六聚体)三聚体,但通过尺寸排阻色谱法估计主要以36mer形式存在于溶液中。 XaHspA单体结构主要由具有无序N端和C端延伸的α-晶状蛋白结构域组成,表明该延伸是柔性的,对于形成二聚体和36mer而言不是必需的。在α-乳白蛋白(LA)展开并聚集的还原条件下,XaHspA 36mers与每个XaHspA二聚体形成一个LA。根据在晶体中观察到的XaHspA二聚体二聚体相互作用,我们建议XaHspA 36mer具有四个可能的构象,但只有XaHspA 36merB,它是由12mer-6mer-6mer-12mer中的开放六聚体形成的,具有可与底物(未折叠蛋白)结合的突出二聚体。可以结合18个还原的LA分子。总之,我们的结果揭示了活性sHsp低聚物的结构基础。 (C)2011 Elsevier Ltd.保留所有权利。

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