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中央结构域缺失影响酵母Hsp40蛋白Sis1和Ydj1的小角X射线散射溶液结构及功能。

Central domain deletions affect the SAXS solution structure and function of yeast Hsp40 proteins Sis1 and Ydj1.

作者信息

Silva Julio C, Borges Julio C, Cyr Douglas M, Ramos Carlos Hi, Torriani Iris L

机构信息

Department of Condensed Matter Physics, "Gleb Wataghin" Physics Institute, State University of Campinas (UNICAMP), Campinas, SP 13083-859, Brazil.

出版信息

BMC Struct Biol. 2011 Oct 19;11:40. doi: 10.1186/1472-6807-11-40.

Abstract

BACKGROUND

Ydj1 and Sis1 are structurally and functionally distinct Hsp40 proteins of the yeast cytosol. Sis1 is an essential gene whereas the ydj1 gene is essential for growth at elevated temperatures and cannot complement sis1 gene deletion. Truncated polypeptides capable of complementing the sis1 gene deletion comprise the J-domain of either Sis1 or Ydj1 connected to the G/F region of Sis1 (but not Ydj1). Sis1 mutants in which the G/F was deleted but G/M maintained were capable of complementing the sis1 gene deletion.

RESULTS

To investigate the relevance of central domains on the structure and function of Ydj1 and Sis1 we prepared Sis1 constructs deleting specific domains. The mutants had decreased affinity for heated luciferase but were equally capable of stimulating ATPase activity of Hsp70. Detailed low resolution structures were obtained and the overall flexibility of Hsp40 and its mutants were assessed using SAXS methods. Deletion of either the G/M or the G/M plus CTDI domains had little impact on the quaternary structure of Sis1 analyzed by the SAXS technique. However, deletion of the ZFLR-CTDI changed the relative position of the J-domains in Ydj1 in such a way that they ended up resembling that of Sis1. The results revealed that the G/F and G/M regions are not the only flexible domains. All model structures exhibit a common clamp-like conformation.

CONCLUSIONS

Our results suggest that the central domains, previously appointed as important features for substrate binding, are also relevant keeping the J-domains in their specific relative positions. The clamp-like architecture observed seems also to be favorable to the interactions of Hsp40 with Hsp70.

摘要

背景

Ydj1和Sis1是酵母细胞质中结构和功能不同的Hsp40蛋白。Sis1是一个必需基因,而ydj1基因在高温下对生长至关重要,且不能互补sis1基因缺失。能够互补sis1基因缺失的截短多肽包含与Sis1(而非Ydj1)的G/F区域相连的Sis1或Ydj1的J结构域。G/F缺失但G/M保留的Sis1突变体能够互补sis1基因缺失。

结果

为了研究中心结构域对Ydj1和Sis1结构与功能的相关性,我们制备了缺失特定结构域的Sis1构建体。这些突变体对加热的荧光素酶的亲和力降低,但同样能够刺激Hsp70的ATP酶活性。获得了详细的低分辨率结构,并使用小角X射线散射(SAXS)方法评估了Hsp40及其突变体的整体柔韧性。通过SAXS技术分析,G/M或G/M加CTDI结构域的缺失对Sis1的四级结构影响不大。然而,ZFLR-CTDI的缺失改变了Ydj1中J结构域的相对位置,使其最终类似于Sis1的J结构域。结果表明,G/F和G/M区域不是唯一的柔性结构域。所有模型结构均呈现出一种常见的钳状构象。

结论

我们的结果表明,先前被认为是底物结合重要特征的中心结构域,对于将J结构域保持在其特定相对位置也很重要。观察到的钳状结构似乎也有利于Hsp40与Hsp70的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fed6/3236591/32537408d855/1472-6807-11-40-1.jpg

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