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Voltage- and ligand-gated ryanodine receptors are functionally separated in developing C2C12 mouse myotubes

机译:电压和配体门控的ryanodine受体在发育中的C2C12小鼠肌管中功能分离

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class="enumerated" style="list-style-type:decimal">In order to further understand the role of voltage- and ligand-gated ryanodine receptors in the control of intracellular Ca2+ signalling during myogenesis, changes in cytosolic free calcium concentration ([Ca2+]i) were investigated by fura-2 videoimaging in C2C12 mouse myotubes developing in vitro.A synchronous [Ca2+]i increase was observed after depolarisation with high [K+], while the Ca2+ response propagated as a wave following caffeine administration. Application of the two stimuli to the same myotube often revealed the existence of cellular zones that were responsive to depolarisation but not to caffeine.Focal application of high [K+] promoted a [Ca2+]i response detectable only in the cellular areas close to the pipette tip, while focal application of caffeine elicited a [Ca2+]i increase which spread as a Ca2+ wave. Buffering of [Ca2+]i by BAPTA did not affect the pattern of the depolarisation-induced [Ca2+]i transient but abolished the Ca2+ waves elicited by caffeine.When high [K+] and caffeine were applied in sequence, reciprocal inhibition of the [Ca2+]i responses was observed.Our results suggest that the different spatial patterns of [Ca2+]i responses are due to uneven distribution of voltage- and ligand-gated ryanodine receptors within the myotube. These two types of receptor control two functionally distinct Ca2+ pools which are part of a common intracellular compartment. Finally, the two differently operated ryanodine receptor channels appear to be independently activated, so that a mechanism of Ca2+-induced Ca2+ release is not required to sustain the global response in C2C12 myotubes.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 为了进一步了解电压门控和配体门控的ryanodine受体在成肌过程中控制细胞内Ca 2 + 信号传导的作用,改变了胞浆中游离钙的浓度([Ca 2+ < / sup>] i)在体外发育的C2C12小鼠肌管中通过fura-2视频成像进行了研究。 [K + ],而Ca 2 + 反应在咖啡因给药后呈波状传播。两种刺激物施加于同一肌管通常显示存在对去极化反应但对咖啡因无反应的细胞区域。 局部施用高[K + ]促进了[Ca 2 + ] i反应仅在靠近移液器吸头的细胞区域可检测到,而咖啡因的局部应用引起[Ca 2 + ] i的增加,并随着Ca 2 + 波。 BAPTA对[Ca 2 + ] i的缓冲作用不会影响去极化诱导的[Ca 2 + ] i瞬态的模式,但会消除Ca 2+ 由咖啡因引起。 当依次施加高浓度的[K + ]和咖啡因时,对[Ca 2 + 我们的研究结果表明,[Ca 2 + ] i响应的不同空间模式是由于电压和配体门控的莱ano碱分布不均引起的肌管内的受体。这两种受体控制着两个功能不同的Ca 2 + 库,它们是一个共同的细胞内区室的一部分。最后,两个不同操作的ryanodine受体通道似乎被独立激活,因此不需要Ca 2 + 诱导的Ca 2 + 释放的机制来维持整体C2C12肌管反应。

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