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July 1, 2013Proceedings of the National Academy of Sciences141 citationsOpen Access

Skeletal muscle-specific T-tubule protein STAC3 mediates voltage-induced Ca 2+ release and contractility

BNBenjamin R. NelsonFWFenfen WuYLYun Liu

Structured PICO

P
Population
Stac3 mutant mice (homozygous deletion of src homology 3 and cysteine rich domain 3) and cultured myotubes from Stac3 mutant mice
I
Intervention
Homozygous deletion of Stac3; application of 4-chloro-m-cresol (ryanodine receptor agonist) to cultured myotubes
O
Outcome
Muscle contractility and Ca(2+) release from the sarcoplasmic reticulumsurrogate

STAC3 is an essential component of the excitation-contraction coupling machinery in skeletal muscle, presenting a new candidate gene for myopathic disorders.

Abstract

Excitation-contraction (EC) coupling comprises events in muscle that convert electrical signals to Ca(2+) transients, which then trigger contraction of the sarcomere. Defects in these processes cause a spectrum of muscle diseases. We report that STAC3, a skeletal muscle-specific protein that localizes to T tubules, is essential for coupling membrane depolarization to Ca(2+) release from the sarcoplasmic reticulum (SR). Consequently, homozygous deletion of src homology 3 and cysteine rich domain 3 (Stac3) in mice results in complete paralysis and perinatal lethality with a range of musculoskeletal defects that reflect a blockade of EC coupling. Muscle contractility and Ca(2+) release from the SR of cultured myotubes from Stac3 mutant mice could be restored by application of 4-chloro-m-cresol, a ryanodine receptor agonist, indicating that the sarcomeres, SR Ca(2+) store, and ryanodine receptors are functional in Stac3 mutant skeletal muscle. These findings reveal a previously uncharacterized, but required, component of the EC coupling machinery of skeletal muscle and introduce a candidate for consideration in myopathic disorders.

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Cite This Study

Nelson et al. (2013) studied this question.

synapsesocial.com/papers/6a1d0cc9d676c7290baf2d44https://doi.org/10.1073/pnas.1310571110
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