4.4 Article

Two Active Site Divalent Ions in the Crystal Structure of the Hammerhead Ribozyme Bound to a Transition State Analogue

Journal

BIOCHEMISTRY
Volume 55, Issue 4, Pages 633-636

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.biochem.5b01139

Keywords

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Funding

  1. National Institutes of Health [R01 GM095923]
  2. Purdue University Department of Biochemistry
  3. Markey Center for Structural Biology
  4. Purdue University Center for Cancer Research
  5. DOE Office of Science by Argonne National Laboratory [DE-AC02-06CH11357]
  6. Michigan Economic Development Corp.
  7. Michigan Technology Tri-Corridor [085P1000817]

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The crystal structure of the hammerhead ribozyme bound to the pentavalent transition state analogue vanadate reveals significant rearrangements relative to the previously determined structures. The active site contracts, bringing G10.1 closer to the cleavage site and repositioning a divalent metal ion such that it could, ultimately, interact directly with the scissile phosphate. This ion could also position a water molecule to serve as a general acid in the cleavage reaction. A second divalent ion is observed coordinated to 06 of G12. This metal ion is well-placed to help tune the pKA of G12. On the basis of this crystal structure as well as a wealth of biochemical studies, we propose a mechanism in which G12 serves as the general base and a magnesium-bound water serves as a general acid.

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