Grassi F, Fucile S, Eusebi F
Dipartimento di Medicina Sperimentale, Università di Roma La Sapienza, Italy.
Pflugers Arch. 1994 Oct;428(3-4):340-5. doi: 10.1007/BF00724516.
In mouse C2C12 myotubes acetylcholine (ACh) elevates the concentration of myoplasmic Ca2+ ([Ca2+]i) by inducing Ca2+ influx through transmitter-gated and voltage-gated channels, and by mobilizing Ca2+ from internal stores. The relative contribution of each of these ACh-activated sources to the global [Ca2+]i elevation was estimated. We found that Ca2+ entry through voltage- and ACh-gated channels accounts for roughly 80% of the total [Ca2+]i increment, while mobilization from internal caffeine-sensitive and inositoltrisphosphate- (InsP3-) sensitive stores contributes the remaining 20% to the maximal [Ca2+]i increment. Furthermore, we found that ACh-induced mobilization from InsP3-sensitive stores also develops in embryonic chick myotubes. The differential importance of the Ca2+ signalling pathways activated by ACh during myogenesis is discussed.
在小鼠C2C12肌管中,乙酰胆碱(ACh)通过诱导Ca2+经递质门控通道和电压门控通道内流以及从内部储存库中释放Ca2+,从而提高肌浆Ca2+浓度([Ca2+]i)。我们估算了这些ACh激活的Ca2+来源对整体[Ca2+]i升高的相对贡献。我们发现,通过电压门控通道和ACh门控通道的Ca2+内流约占[Ca2+]i总增量的80%,而从内部对咖啡因敏感和对三磷酸肌醇(InsP3)敏感的储存库中释放的Ca2+对[Ca2+]i最大增量的贡献为其余的20%。此外,我们发现ACh诱导的从InsP3敏感储存库中释放Ca2+的现象在胚胎期鸡肌管中也会出现。本文讨论了在肌生成过程中ACh激活的Ca2+信号通路的不同重要性。