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An α‐helical C‐terminal tail segment of the skeletal L‐type Ca 2+ channel β 1a subunit activates ryanodine receptor type 1 via a hydrophobic surface
Author(s) -
Karunasekara Yamuna,
Rebbeck Robyn T.,
Weaver Llara M.,
Board Philip G.,
Dulhunty Angela F.,
Casarotto Marco G.
Publication year - 2012
Publication title -
the faseb journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.709
H-Index - 277
eISSN - 1530-6860
pISSN - 0892-6638
DOI - 10.1096/fj.12-211334
Subject(s) - ryr1 , ryanodine receptor , chemistry , biophysics , skeletal muscle , peptide , protein subunit , biochemistry , receptor , biology , anatomy , gene
Excitation‐contraction (EC) coupling in skeletal muscle depends on protein interactions between the transverse tubule dihydropyridine receptor (DHPR) voltage sensor and intracellular ryanodine receptor (RyR1) calcium release channel. We present novel data showing that the C‐terminal 35 residues of the β 1a subunit adopt a nascent α‐helix in which 3 hydrophobic residues align to form a hydrophobic surface that binds to RyR1 isolated from rabbit skeletal muscle. Mutation of the hydrophobic residues (L496, L500, W503) in peptide β 1a V490‐M524, corresponding to the C‐terminal 35 residues of β 1a , reduced peptide binding to RyR1 to 15.2 ± 7.1% and prevented the 2.9 ± 0.2‐fold activation of RyR1 by 10 nM wild‐type peptide. An upstream hydrophobic heptad repeat implicated in β 1a binding to RyR1 does not contribute to RyR1 activation. Wild‐type β 1a A474‐A508 peptide (10 nM), containing heptad repeat and hydrophobic surface residues, increased RyR1 activity by 2.3 ± 0.2‐ and 2.2 ± 0.3‐fold after mutation of the heptad repeat residues. We conclude that specific hydrophobic surface residues in the 35 residue β 1a C‐terminus bind to RyR1 and increase channel activity in lipid bilayers and thus may support skeletal EC coupling.—Karunasekara, Y., Rebbeck, R. T., Weaver, L. M., Board, P. G., Dulhunty, A. F., Casarotto, M. G. An α‐helical C‐terminal tail segment of the skeletal L‐type Ca 2+ channel β 1a subunit activates ryanodine receptor type 1 via a hydrophobic surface. FASEB J. 26, 5049–5059 (2012). www.fasebj.org

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