4.6 Article

Identification of novel quaternary domain interactions in the Hsp90 chaperone, GRP94

Journal

PROTEIN SCIENCE
Volume 15, Issue 6, Pages 1260-1269

Publisher

WILEY
DOI: 10.1110/ps.052065106

Keywords

adenosine nucleotides; geldanamycin; GRP94; Hsp90; molecular chaperone

Funding

  1. NIDDK NIH HHS [DK53058, R01 DK053058] Funding Source: Medline
  2. PHS HHS [12961, 01614, 15804] Funding Source: Medline

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The structural basis for the coupling of ATP binding and hydrolysis to chaperone activity remains a central question in Hsp90 biology. By analogy to MutL, ATP binding to Hsp90 is thought to promote intramolecular N-terminal dimerization, yielding a molecular clamp functioning in substrate protein activation. Though observed in studies with recombinant domains, whether such quaternary states are present in native Hsp90s is unknown. In this study, native subunit interactions in GRP94, the endoplasmic reticulum Hsp90, were analyzed using chemical cross-linking in conjunction with tandem mass spectrometry. We report the identification of two distinct intermolecular interaction sites. Consistent with previous studies, one site comprises the C-terminal dimerization domain. The remaining site represents a novel intermolecular contact between the N-terminal and middle ( M) domains of opposing subunits. This N+M domain interaction was present in the nucleotide-empty, ADP-, ATP-, or geldanamycin-bound states and could be selectively disrupted upon addition of synthetic geldanamycin dimers. These results identify a compact, intertwined quaternary conformation of native GRP94 and suggest that inter-subunit N+M interactions are integral to the structural biology of Hsp90.

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