4.7 Article

Crystal Structures of the N-Terminal Domains of Cardiac and Skeletal Muscle Ryanodine Receptors: Insights into Disease Mutations

Journal

STRUCTURE
Volume 17, Issue 11, Pages 1505-1514

Publisher

CELL PRESS
DOI: 10.1016/j.str.2009.08.016

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Funding

  1. Heart and Stroke Foundation of British Columbia
  2. Yukon Territories and by the Canadian Foundation for Innovation
  3. BC Knowledge Development Fund

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Ryanodine receptors (RyRs) are channels governing the release of Ca2+ from the sarcoplasmic or endoplasmic reticulum. They are required for the contraction of both skeletal (RyR1) and cardiac (RyR2) muscles. Mutations in both RyR1 and RyR2 have been associated with severe genetic disorders, but high-resolution data describing the disease variants in detail have been lacking. Here we present the crystal structures of the N-terminal domains of both RyR2 (1-217) and RyR1 (9-205) at 2.55 angstrom and 2.9 angstrom, respectively. The domains map in a hot spot region for disease mutations. Both structures consist of a core beta trefoil domain flanked by an alpha helix. Crystal structures of two RYR2 disease mutants, A77V (2.2 angstrom) and V186M (1.7 angstrom), show that the mutations cause distinct local changes in the surface of the protein. A RyR2 deletion mutant causes significant changes in the thermal stability. The disease positions highlight two putative binding interfaces required for normal RyR function.

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