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Glucocorticoid Receptor Function Regulated by Coordinated Action of the Hsp90 and Hsp70 Chaperone Cycles

机译:糖皮质激素受体功能受Hsp90和Hsp70伴侣周期的协同作用调节。

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The glucocorticoid receptor (GR), like many signaling proteins, depends on the Hsp90 molecular chaperone for in vivo function. Although Hsp90 is required for ligand binding in vivo, purified apo GR is capable of binding ligand with no enhancement from Hsp90. We reveal that Hsp70, known to facilitate client delivery to Hsp90, inactivates GR through partial unfolding, whereas Hsp90 reverses this inactivation. Full recovery of ligand binding requires ATP hydrolysis on Hsp90 and the Hop and p23 cochaperones. Surprisingly, Hsp90 ATP hydrolysis appears to regulate client transfer from Hsp70, likely through a coupling of the two chaperone's ATP cycles. Such coupling is embodied in contacts between Hsp90 and Hsp70 in the GR:Hsp70:Hsp90:Hop complex imaged by cryoelectron microscopy. Whereas GR released from Hsp70 is aggregation prone, release from Hsp90 protects GR from aggregation and enhances its ligand affinity. Together, this illustrates how coordinated chaperone interactions can enhance stability, function, and regulation.
机译:像许多信号蛋白一样,糖皮质激素受体(GR)依赖于Hsp90分子伴侣的体内功能。尽管体内需要Hsp90来进行配体结合,但纯化的apo GR能够结合配体,而Hsp90没有增强作用。我们发现,已知Hsp70有助于促进客户向Hsp90的交付,它通过部分展开使GR失活,而Hsp90则逆转了这种失活。要完全恢复配体结合,就需要在Hsp90以及Hop和p23伴侣分子上进行ATP水解。出乎意料的是,Hsp90 ATP水解似乎通过两个伴侣的ATP循环的耦合来调节客户从Hsp70的转移。这种耦合体现在通过低温电子显微镜成像的GR:Hsp70:Hsp90:Hop复合物中Hsp90和Hsp70之间的接触中。从Hsp70释放的GR是易于聚集的,而从Hsp90释放的GR可保护GR免受聚集并增强其配体亲和力。在一起,这说明了协同的伴侣分子相互作用如何增强稳定性,功能和调节。

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