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J Biol Chem ; 291(28): 14555-65, 2016 Jul 08.
Article in English | MEDLINE | ID: mdl-27189940

ABSTRACT

We exploited a variety of mouse models to assess the roles of JP45-CASQ1 (CASQ, calsequestrin) and JP45-CASQ2 on calcium entry in slow twitch muscles. In flexor digitorum brevis (FDB) fibers isolated from JP45-CASQ1-CASQ2 triple KO mice, calcium transients induced by tetanic stimulation rely on calcium entry via La(3+)- and nifedipine-sensitive calcium channels. The comparison of excitation-coupled calcium entry (ECCE) between FDB fibers from WT, JP45KO, CASQ1KO, CASQ2KO, JP45-CASQ1 double KO, JP45-CASQ2 double KO, and JP45-CASQ1-CASQ2 triple KO shows that ECCE enhancement requires ablation of both CASQs and JP45. Calcium entry activated by ablation of both JP45-CASQ1 and JP45-CASQ2 complexes supports tetanic force development in slow twitch soleus muscles. In addition, we show that CASQs interact with JP45 at Ca(2+) concentrations similar to those present in the lumen of the sarcoplasmic reticulum at rest, whereas Ca(2+) concentrations similar to those present in the SR lumen after depolarization-induced calcium release cause the dissociation of JP45 from CASQs. Our results show that the complex JP45-CASQs is a negative regulator of ECCE and that tetanic force development in slow twitch muscles is supported by the dynamic interaction between JP45 and CASQs.


Subject(s)
Calcium-Binding Proteins/metabolism , Calcium/metabolism , Calsequestrin/metabolism , Membrane Proteins/metabolism , Muscle Fibers, Slow-Twitch/physiology , Animals , Calcium-Binding Proteins/genetics , Calsequestrin/genetics , Gene Knockout Techniques , Membrane Proteins/genetics , Mice , Muscle Contraction , Muscle, Skeletal/physiology , Sarcoplasmic Reticulum/genetics , Sarcoplasmic Reticulum/metabolism
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