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Conformational processing of oncogenic v-Src kinase by the molecular chaperone Hsp90.


ABSTRACT: Hsp90 is a molecular chaperone involved in the activation of numerous client proteins, including many kinases. The most stringent kinase client is the oncogenic kinase v-Src. To elucidate how Hsp90 chaperones kinases, we reconstituted v-Src kinase chaperoning in vitro and show that its activation is ATP-dependent, with the cochaperone Cdc37 increasing the efficiency. Consistent with in vivo results, we find that Hsp90 does not influence the almost identical c-Src kinase. To explain these findings, we designed Src kinase chimeras that gradually transform c-Src into v-Src and show that their Hsp90 dependence correlates with compactness and folding cooperativity. Molecular dynamics simulations and hydrogen/deuterium exchange of Hsp90-dependent Src kinase variants further reveal increased transitions between inactive and active states and exposure of specific kinase regions. Thus, Hsp90 shifts an ensemble of conformations of v-Src toward high activity states that would otherwise be metastable and poorly populated.

SUBMITTER: Boczek EE 

PROVIDER: S-EPMC4485149 | biostudies-literature | 2015 Jun

REPOSITORIES: biostudies-literature

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Conformational processing of oncogenic v-Src kinase by the molecular chaperone Hsp90.

Boczek Edgar E EE   Reefschläger Lasse G LG   Dehling Marco M   Struller Tobias J TJ   Häusler Elisabeth E   Seidl Andreas A   Kaila Ville R I VR   Buchner Johannes J  

Proceedings of the National Academy of Sciences of the United States of America 20150608 25


Hsp90 is a molecular chaperone involved in the activation of numerous client proteins, including many kinases. The most stringent kinase client is the oncogenic kinase v-Src. To elucidate how Hsp90 chaperones kinases, we reconstituted v-Src kinase chaperoning in vitro and show that its activation is ATP-dependent, with the cochaperone Cdc37 increasing the efficiency. Consistent with in vivo results, we find that Hsp90 does not influence the almost identical c-Src kinase. To explain these finding  ...[more]

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