首页> 外文期刊>The Journal of Physiology >Loss of caveolin-3 induced by the dystrophy-associated P104L mutation impairs L-type calcium channel function in mouse skeletal muscle cells
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Loss of caveolin-3 induced by the dystrophy-associated P104L mutation impairs L-type calcium channel function in mouse skeletal muscle cells

机译:与营养不良相关的P104L突变引起的caveolin-3的缺失损害了小鼠骨骼肌细胞的L型钙通道功能

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摘要

Caveolins are membrane scaffolding proteins that associate with and regulate a variety of signalling proteins, including ion channels. A deficiency in caveolin-3 (Cav-3), the major striated muscle isoform, is responsible for skeletal muscle disorders, such as limb-girdle muscular dystrophy 1C (LGMD 1C). The molecular mechanisms leading to the muscle wasting that characterizes this pathology are poorly understood. Here we show that a loss of Cav-3 induced by the expression of the LGMD lC-associated mutant P104L (Cav-3~(P104L)) provokes a reduction by half of the maximal conductance of the voltage-dependent L-type Ca2 + channel in mouse primary cultured myotubes and fetal skeletal muscle fibres. Confocal immunomiscrocopy indicated a colocalization of Cav-3 and Ca_vl.l, the pore-forming subunit of the L-type Ca~(2+) channel, at the surface membrane and in the developing T-tubule network in control myotubes and fetal fibres. In myotubes expressing Cav-3~(P104L), the loss of Cav-3 was accompanied by a 66% reduction in Ca_v 1.1 mean labelling intensity. Our results suggest that Cav-3 is involved in L-type Ca~(2+) channel membrane function and localization in skeletal muscle cells and that an alteration of L-type Ca~(2+) channels could be involved in the physiopathological mechanisms of caveolinopathies.
机译:洞穴蛋白是与各种信号蛋白(包括离子通道)缔合并调节其信号的膜支架蛋白。 Caveolin-3(Cav-3)是主要的横纹肌同种型的缺陷,可引起骨骼肌疾病,例如肢带型肌营养不良1C(LGMD 1C)。导致肌肉消瘦的这种病理学特征的分子机制了解甚少。在这里,我们表明,由LGMD lC相关突变体P104L(Cav-3〜(P104L))的表达诱导的Cav-3丢失引起电压依赖性L型Ca2 +的最大电导降低一半。小鼠原代培养的肌管和胎儿骨骼肌纤维中的通道。共聚焦免疫显微镜检查表明,Cav-3和Ca_v1.1是L型Ca〜(2+)通道的成孔亚基,在肌管和胎儿纤维的表面膜和正在发育的T管网络中共定位。 。在表达Cav-3〜(P104L)的肌管中,Cav-3的丧失伴随着Ca_v 1.1平均标记强度的降低66%。我们的研究结果表明,Cav-3参与了L型Ca〜(2+)通道膜功能和骨骼肌细胞的定位,并且L型Ca〜(2+)通道的改变可能与生理病理机制有关。小窝病。

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