Röhl Alina, Tippel Franziska, Bender Evelyn, Schmid Andreas B, Richter Klaus, Madl Tobias, Buchner Johannes
Center for Integrated Protein Science (CIPSM) at the Department Chemie, Technische Universität München, Garching, Germany.
Center for Integrated Protein Science (CIPSM) at the Department Chemie, Technische Universität München, Garching, Germany Institute of Structural Biology Helmholtz Zentrum München, Neuherberg, Germany Institute of Molecular Biology & Biochemistry, Center of Molecular Medicine, Medical University of Graz, Graz, Austria.
EMBO Rep. 2015 Feb;16(2):240-9. doi: 10.15252/embr.201439198. Epub 2014 Dec 12.
In eukaryotes, the molecular chaperones Hsp90 and Hsp70 are connected via the co-chaperone Sti1/Hop, which allows transfer of clients. Here, we show that the basic functions of yeast Sti1 and human Hop are conserved. These include the simultaneous binding of Hsp90 and Hsp70, the inhibition of the ATPase activity of Hsp90, and the ability to support client activation in vivo. Importantly, we reveal that both Hop and Sti1 are subject to inhibitory phosphorylation, although the sites modified and the influence of regulatory phosphorylation is species specific. Phospho-mimetic variants have a reduced ability to activate clients in vivo and different affinity for Hsp70. Hop is more tightly regulated, as phosphorylation affects also the interaction with Hsp90 and induces structural rearrangements in the core part of the protein.
在真核生物中,分子伴侣Hsp90和Hsp70通过辅助伴侣蛋白Sti1/Hop相连,这使得底物能够进行转移。在此,我们表明酵母Sti1和人类Hop的基本功能是保守的。这些功能包括同时结合Hsp90和Hsp70、抑制Hsp90的ATP酶活性以及在体内支持底物激活的能力。重要的是,我们发现Hop和Sti1都受到抑制性磷酸化的作用,尽管修饰位点以及调节性磷酸化的影响具有物种特异性。模拟磷酸化变体在体内激活底物的能力降低,并且对Hsp70具有不同的亲和力。Hop受到的调控更为严格,因为磷酸化还会影响其与Hsp90的相互作用,并诱导该蛋白核心部分的结构重排。