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Properties and role of voltage-dependent calcium channels during mouse skeletal muscle differentiation

机译:电压依赖性钙通道在小鼠骨骼肌分化过程中的性质和作用

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Skeletal muscle differentiation depends on calcium ions, but it is yet unclear whether calcium entry through voltage-dependent calcium channels (VDCCs) contributes to the myoblast fusion process. In this study, we investigate whether calcium influx through functional T-type VDCCs precedes and affects mouse satellite cell fusion. We report here on the properties and the role of the VDCCs expressed in differentiating mouse muscular cells using both the C2C12 cell line and primary cultures of satellite cells. We present electrophysiological and biochemical evidence demonstrating that T-type and L-type VDCCs are not present in C2C12 and primary cultures of mouse satellite cells prior to the fusion stage. Although mRNA for the T-type CaV3.2 subunit was detected in differentiated C2C12 cells, no T-type calcium currents could be recorded, while both T-type and L-type calcium currents were detected after the fusion process in primary cultures. In addition, chronic application of 30 μM nickel, known to inhibit T-type CaV3.2 channels, did not alter the fusion of C2C12 cells and mouse satellite cells in primary culture. Overall, the data indicate that, unlike in humans, CaV3.2 T-type calcium channels play no role in mouse satellite cell fusion.
机译:骨骼肌的分化取决于钙离子,但尚不清楚钙是否通过电压依赖性钙通道(VDCC)进入而有助于成肌细胞融合过程。在这项研究中,我们调查是否钙通过功能性T型VDCC涌入之前和影响鼠标卫星细胞融合。我们在这里报告在使用C2C12细胞系和卫星细胞的原代培养物分化小鼠肌肉细胞中表达的VDCCs的特性和作用。我们目前的电生理和生化证据表明,在融合阶段之前,C2C12和小鼠卫星细胞的原代培养物中不存在T型和L型VDCC。尽管在分化的C2C12细胞中检测到了T型CaV 3.2亚基的mRNA,但在原代细胞融合过程后没有记录到T型钙电流,而同时检测到了T型和L型钙电流。文化。此外,长期应用已知可抑制T型CaV 3.2通道的30μM镍不会改变原代培养中C2C12细胞和小鼠卫星细胞的融合。总体而言,数据表明,与人类不同,CaV 3.2 T型钙通道在小鼠卫星细胞融合中不起作用。

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    Institut de Génomique Fonctionnelle (IGF) CNRS UMR5203 – INSERM U661 – Universités de Montpellier I II;

    Institut de Génomique Fonctionnelle (IGF) CNRS UMR5203 – INSERM U661 – Universités de Montpellier I II;

    Institut de Génomique Fonctionnelle (IGF) CNRS UMR5203 – INSERM U661 – Universités de Montpellier I II;

    Institut de Génomique Fonctionnelle (IGF) CNRS UMR5203 – INSERM U661 – Universités de Montpellier I II;

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