首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Crystal structures of Hsp104 N-terminal domains from Saccharomyces cerevisiae and Candida albicans suggest the mechanism for the function of Hsp104 in dissolving prions
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Crystal structures of Hsp104 N-terminal domains from Saccharomyces cerevisiae and Candida albicans suggest the mechanism for the function of Hsp104 in dissolving prions

机译:HSP104 N-末端域的晶体结构来自酿酒酵母和念珠菌念珠菌和念珠菌的域,表明HSP104在溶解朊病毒中的功能的机制

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摘要

Hsp104 is a yeast member of the Hsp100 family which functions as a molecular chaperone to disaggregate misfolded polypeptides. To understand the mechanism by which the Hsp104 N-terminal domain (NTD) interacts with its peptide substrates, crystal structures of the Hsp104 NTDs from Saccharomyces cerevisiae (ScHsp104NTD) and Candida albicans (CaHsp104NTD) have been determined at high resolution. The structures of ScHsp104NTD and CaHsp104NTD reveal that the yeast Hsp104 NTD may utilize a conserved putative peptide-binding groove to interact with misfolded polypeptides. In the crystal structures ScHsp104NTD forms a homodimer, while CaHsp104NTD exists as a monomer. The consecutive residues Gln105, Gln106 and Lys107, and Lys141 around the putative peptide-binding groove mediate the monomer-monomer interactions within the ScHsp104NTD homodimer. Dimer formation by ScHsp104NTD suggests that the Hsp104 NTD may specifically interact with polyQ regions of prion-prone proteins. The data may reveal the mechanism by which Hsp104 NTD functions to suppress and/or dissolve prions.
机译:HSP104是HSP100系列的酵母成员,其用作分子伴侣以分解错误折叠的多肽。为了理解HSP104 N-末端结构域(NTD)与其肽基材相互作用的机制,HSP104 NTDS来自酿酒酵母(SCHSP104NTD)和念珠菌(CAHSP104NTD)的HSP104 NTDS的晶体结构已经在高分辨率下确定。 SCHSP104NTD和CAHSP104NTD的结构表明,酵母HSP104NTD可以利用保守推定的肽结合槽与错误折叠的多肽相互作用。在晶体结构中,Schsp104NTD形成同型二聚体,而CaHSP104NTD作为单体存在。连续的残基GLN105,GLN106和LYS107,GLN106和LYS107和围绕推定的肽结合槽的LYS141介导SCHSP104NTD同源体内的单体单体相互作用。 SCHSP104NTD的二聚体形成表明HSP104 NTD可以与Proion-Prone蛋白的PolyQ区域具体相互作用。数据可以揭示HSP104 NTD抑制和/或溶解朊病毒的机制。

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