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Ligand-induced conformational shift in the N-terminal domain of GRP94, an Hsp90 chaperone

  • Robert M. Immormino
  • , D. Eric Dollins
  • , Paul L. Shaffer
  • , Karen L. Soldano
  • , Melissa A. Walker
  • , Daniel T. Gewirth
  • Duke University

Research output: Contribution to journalArticlepeer-review

95 Scopus citations

Abstract

GRP94 is the endoplasmic reticulum paralog of cytoplasmic Hsp90. Models of Hsp90 action posit an ATP-dependent conformational switch in the N-terminal ligand regulatory domain of the chaperone. However, crystal structures of the isolated N-domain of Hsp90 in complex with a variety of ligands have yet to demonstrate such a conformational change. We have determined the structure of the N-domain of GRP94 in complex with ATP, ADP, and AMP. Compared with the N-ethylcarboxamidoadenosine and radicicol-bound forms, these structures reveal a large conformational rearrangement in the protein. The nucleotide-bound form exposes new surfaces that interact to form a biochemically plausible dimer that is reminiscent of those seen in structures of MutL and DNA gyrase. Weak ATP binding and a conformational change in response to ligand identity are distinctive mechanistic features of GRP94 and suggest a model for how GRP94 functions in the absence of cochaperones and ATP hydrolysis.

Original languageEnglish
Pages (from-to)46162-46171
Number of pages10
JournalJournal of Biological Chemistry
Volume279
Issue number44
DOIs
StatePublished - Oct 29 2004

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