Grant Duration
04/15 – 06/15
Our research has previously demonstrated that cysteine-nitrosylation of the calcium release channel/ryanodine receptor type 1 (RyR1) on the skeletal muscle sarcoplasmic reticulum causes depletion of the stabilizing subunit calstabin1 (FKBP12) from the RyR1 macromolecular complex in a murine model of Duchenne muscular dystrophy (mdx mice)1. This results in a sarcoplasmic reticular calcium leak via defective RyR1 channels. We have also demonstrated that the skeletal muscle RyR1 from Sgcb-/- deficient mice were oxidized, nitrosylated, and depleted of the stabilizing subunit calstabin1, which was associated with increased open probability of the RyR1 channels2. The goal of this proposal is to determine the role of “leaky” RyR1 in the development of muscle weakness associated with the progressive muscular dystrophy resulting from absence of the dysferlin protein. The specific aims of this project are to (1) Determine whether RyR1 from BLAJ mice are modified and depleted of calstabin1 and (2) Determine whether RyR1 from BLAJ mice are “leaky”.
















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