4.8 Article

Hsp90-Tau Complex Reveals Molecular Basis for Specificity in Chaperone Action

期刊

CELL
卷 156, 期 5, 页码 963-974

出版社

CELL PRESS
DOI: 10.1016/j.cell.2014.01.037

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资金

  1. EU [25651, 317371, 608180]
  2. Nederlands Organisation for Scientific Research NWO
  3. Utrecht University
  4. Fundacao para a Ciencia e a Tecnologia, Portugal [SFRH/BPD/78075/2011]
  5. project ITRANS from the Marie Curie Actions [PCIG11-GA-2012-322346]
  6. NWO-CW
  7. European Union (EU) [261863]
  8. German Research Foundation [ZW71/7-1]
  9. National Insitutes of Health [NS073899]
  10. Bavarian Ministry of Sciences, Research and the Arts (Bavarian Molecular Biosystems Research Network)
  11. Austrian Academy of Sciences (APART-fellowship)
  12. German Research Foundation (Emmy Noether program) [MA 5703/1-1]

向作者/读者索取更多资源

Protein folding in the cell relies on the orchestrated action of conserved families of molecular chaperones, the Hsp70 and Hsp90 systems. Hsp70 acts early and Hsp90 late in the folding path, yet the molecular basis of this timing is enigmatic, mainly because the substrate specificity of Hsp90 is poorly understood. Here, we obtained a structural model of Hsp90 in complex with its natural disease-associated substrate, the intrinsically disordered Tau protein. Hsp90 binds to a broad region in Tau that includes the aggregation-prone repeats. Complementarily, a 106-angstrom-long substrate-binding interface in Hsp90 enables many low-affinity contacts. This allows recognition of scattered hydrophobic residues in late folding intermediates that remain after early burial of the Hsp70 sites. Our model resolves the paradox of how Hsp90 specifically selects for late folding intermediates but also for some intrinsically disordered proteins-through the eyes of Hsp90 they look the same.

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