Biochemical Journal · 1991 · 43 citations · 36 references
MechanobiologyMuscle Cell DifferentiationCell PhysiologyMuscle FunctionMolecular PhysiologySignal TransductionCa2+ AccumulationEngineeringMedicineSkeletal MusclePhysiologyMechanotransductionElectrophysiologyCa2+ MobilizationCell BiologyCell SignalingCellular PhysiologyBc3h1 Muscle Cells
Ca2+ sequestration and release in BC3H1 muscle cells is strongly dependent on the stage of differentiation. In proliferating cells, more than 90% of the sequestered Ca2+ was Ins(1,4,5)P3-sensitive and 25% was caffeine-sensitive. In differentiated cells, the Ca2+ accumulation was 5-fold higher and was InsP3-insensitive, but about 60% of the sequestered Ca2+ was caffeine-sensitive. These changes were reversible upon addition of growth stimuli. Similarly, by measuring the intracellular Ca2+ concentration in single intact BC3H1 cells, it was found that the number of histamine-responsive cells decreased and the number of caffeine-responsive cells increased during muscle cell differentiation. These data indicate that the development of the muscle phenotype in BC3H1 myoblasts induces a major rearrangement of the mechanisms for Ca2+ mobilization.
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Calcium release from the sarcoplasmic reticulum
Makoto Endo · Physiological Reviews · 1977 · 1.6K citations
CHARACTERIZATION OF A UNIQUE MUSCLE CELL LINE
David Schubert, AJ Harris, C.E. Devine et al. · The Journal of Cell Biology · 1974 · 343 citations · Full text
I N Pessah, Alexander O. Francini, Donald J. Scales et al. · Journal of Biological Chemistry · 1986 · 222 citations · Full text