Bachman Ashleigh B, Keramisanou Dimitra, Xu Wanping, Beebe Kristin, Moses Michael A, Vasantha Kumar M V, Gray Geoffrey, Noor Radwan Ebna, van der Vaart Arjan, Neckers Len, Gelis Ioannis
Department of Chemistry, University of South Florida, Tampa, FL, 33620, USA.
Urologic Oncology Branch, National Cancer Institute, Bethesda, MD, 20892, USA.
Nat Commun. 2018 Jan 17;9(1):265. doi: 10.1038/s41467-017-02711-w.
During the Hsp90-mediated chaperoning of protein kinases, the core components of the machinery, Hsp90 and the cochaperone Cdc37, recycle between different phosphorylation states that regulate progression of the chaperone cycle. We show that Cdc37 phosphorylation at Y298 results in partial unfolding of the C-terminal domain and the population of folding intermediates. Unfolding facilitates Hsp90 phosphorylation at Y197 by unmasking a phosphopeptide sequence, which serves as a docking site to recruit non-receptor tyrosine kinases to the chaperone complex via their SH2 domains. In turn, Hsp90 phosphorylation at Y197 specifically regulates its interaction with Cdc37 and thus affects the chaperoning of only protein kinase clients. In summary, we find that by providing client class specificity, Hsp90 cochaperones such as Cdc37 do not merely assist in client recruitment but also shape the post-translational modification landscape of Hsp90 in a client class-specific manner.
在热休克蛋白90(Hsp90)介导的蛋白激酶伴侣作用过程中,该机制的核心组分Hsp90和共伴侣蛋白Cdc37在不同的磷酸化状态之间循环,这些状态调节伴侣循环的进程。我们发现,Cdc37的Y298位点磷酸化会导致其C末端结构域部分展开并产生折叠中间体群体。展开通过暴露一个磷酸肽序列促进了Hsp90的Y197位点磷酸化,该序列作为一个对接位点,通过非受体酪氨酸激酶的SH2结构域将其招募到伴侣复合物中。反过来,Hsp90的Y197位点磷酸化特异性地调节其与Cdc37的相互作用,从而仅影响蛋白激酶客户蛋白的伴侣作用。总之,我们发现,通过提供客户蛋白类别特异性,诸如Cdc37这样的Hsp90共伴侣蛋白不仅协助招募客户蛋白,还以客户蛋白类别特异性的方式塑造Hsp90的翻译后修饰格局。