4.8 Article

STRUCTURAL BIOLOGY Atomic structure of Hsp90-Cdc37-Cdk4 reveals that Hsp90 traps and stabilizes an unfolded kinase

Journal

SCIENCE
Volume 352, Issue 6293, Pages 1542-1547

Publisher

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.aaf5023

Keywords

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Funding

  1. Protein Structure Initiative-Biology grant [U01 GM098254]
  2. American Association for Cancer Research-Breast Cancer Research Foundation grant [218084]
  3. HHMI Helen Hay Whitney Foundation
  4. HHMI International Student Research Fellowship
  5. HHMI
  6. NIH National Institute of General Medical Sciences [9 P41 GM103310]
  7. NSF [ACI-1053575]

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The Hsp90 molecular chaperone and its Cdc37 cochaperone help stabilize and activate more than half of the human kinome. However, both the mechanism by which these chaperones assist their client kinases and the reason why some kinases are addicted to Hsp90 while closely related family members are independent are unknown. Our structural understanding of these interactions is lacking, as no full-length structures of human Hsp90, Cdc37, or either of these proteins with a kinase have been elucidated. Here we report a 3.9 angstrom cryo-electron microscopy structure of the Hsp90-Cdc37-Cdk4 kinase complex. Surprisingly, the two lobes of Cdk4 are completely separated with the beta 4-beta 5 sheet unfolded. Cdc37 mimics part of the kinase N lobe, stabilizing an open kinase conformation by wedging itself between the two lobes. Finally, Hsp90 clamps around the unfolded kinase beta 5 strand and interacts with exposed N- and C-lobe interfaces, protecting the kinase in a trapped unfolded state. On the basis of this structure and an extensive amount of previously collected data, we propose unifying conceptual and mechanistic models of chaperone-kinase interactions.

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