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首页> 外文期刊>Journal of Molecular Biology >Hsp90 Sensitivity to ADP Reveals Hidden Regulation Mechanisms
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Hsp90 Sensitivity to ADP Reveals Hidden Regulation Mechanisms

机译:HSP90对ADP的敏感性显示隐藏的监管机制

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The ATPase cycle of the Hsp90 molecular chaperone is essential for maintaining the stability of numerous client proteins. Extensive analysis has focused on ATP-driven conformational changes of Hsp90; however, little is known about how Hsp90 operates under physiological nucleotide conditions in which both ATP and ADP are present. By quantifying Hsp90 activity under mixed nucleotide conditions, we find dramatic differences in ADP sensitivity among Hsp90 homologs. ADP acts as a strong ATPase inhibitor of cytosol-specific Hsp90 homologs, whereas organellular Hsp90 homologs (Grp94 and TRAP1) are relatively insensitive to the presence of ADP. These results imply that an ATP/ADP heterodimer of cytosolic Hsp90 is the predominant active state under physiological nucleotide conditions. ADP inhibition of human and yeast cytosolic Hsp90 can be relieved by the cochaperone aha1. ADP inhibition of bacterial Hsp90 can be relieved by bacterial Hsp70 and an activating client protein. These results suggest that altering ADP inhibition may be a mechanism of Hsp90 regulation. To determine the molecular origin of ADP inhibition, we identify residues that preferentially stabilize either ATP or ADP. Mutations at these sites can both increase and decrease ADP inhibition. An accounting of ADP is critically important for designing and interpreting experiments with Hsp90. For example, contaminating ADP is a confounding factor in fluorescence resonance energy transfer experiments measuring arm closure rates of Hsp90. Our observations suggest that ADP at physiological levels is important to Hsp90 structure, activity, and regulation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:HSP90分子伴侣的ATPase循环对于维持许多客户蛋白的稳定性是必不可少的。广泛的分析专注于HSP90的ATP驱动的构象变化;然而,对于HSP90在存在ATP和ADP的生理核苷酸条件下,HSP90如何运行很少。通过在混合核苷酸条件下定量HSP90活性,我们在HSP90同源物中发现ADP敏感性的显着差异。 ADP作为细胞溶溶胶特异性HSP90同源物的强酶抑制剂,而细胞细胞间Hsp90同源物(GRP94和Trap1)对ADP的存在相对不敏感。这些结果暗示细胞骨甲Hsp90的ATP / ADP异二聚体是生理核苷酸条件下的主要活性状态。 ADP抑制人和酵母细胞源性Hsp90可以通过Cochaperone AHA1释放。可以通过细菌Hsp70和活化的客户蛋白来缓解细菌Hsp90的ADP抑制。这些结果表明,改变ADP抑制可能是HSP90调节的机制。为了确定ADP抑制的分子来源,我们鉴定了优先稳定ATP或ADP的残留物。这些位点的突变可以增加和降低ADP抑制。 ADP的核算对于使用HSP90设计和解释实验至关重要。例如,污染ADP是测量HSP90的臂闭合率的荧光共振能量转移实验中的混淆因素。我们的观察结果表明,在生理水平下的ADP对HSP90结构,活动和监管很重要。 (c)2017 Elsevier Ltd.保留所有权利。

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