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Morphology and molecular composition of sarcoplasmic reticulum surface junctions in the absence of DHPR and RyR in mouse skeletal muscle.

机译:在没有DHPR和RyR的小鼠骨骼肌中肌浆网表面连接的形态和分子组成。

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摘要

Calcium release during excitation-contraction coupling of skeletal muscle cells is initiated by the functional interaction of the exterior membrane and the sarcoplasmic reticulum (SR), mediated by the "mechanical" coupling of ryanodine receptors (RyR) and dihydropyridine receptors (DHPR). RyR is the sarcoplasmic reticulum Ca(2+) release channel and DHPR is an L-type calcium channel of exterior membranes (surface membrane and T tubules), which acts as the voltage sensor of excitation-contraction coupling. The two proteins communicate with each other at junctions between SR and exterior membranes called calcium release units and are associated with several proteins of which triadin and calsequestrin are the best characterized. Calcium release units are present in diaphragm muscles and hind limb derived primary cultures of double knock out mice lacking both DHPR and RyR. The junctions show coupling between exterior membranes and SR, and an apparently normal content and disposition of triadin and calsequestrin. Therefore SR-surface docking, targeting of triadin and calsequestrin to the junctional SR domains and the structural organization of the two latter proteins are not affected by lack of DHPR and RyR. Interestingly, simultaneous lack of the two major excitation-contraction coupling proteins results in decrease of calcium release units frequency in the diaphragm, compared with either single knockout mutation.
机译:骨骼肌细胞的兴奋-收缩偶联过程中的钙释放是由外膜和肌质网(SR)的功能相互作用引发的,该相互作用是由ryanodine受体(RyR)和二氢吡啶受体(DHPR)的“机械”偶联介导的。 RyR是肌浆网Ca(2+)释放通道,而DHPR是外部膜(表面膜和T小管)的L型钙通道,其充当激励-收缩耦合的电压传感器。这两种蛋白质在SR和称为钙释放单元的外膜之间的交界处相互通讯,并与其中最具有特征的三联蛋白和钙螯合蛋白的几种蛋白质相关。缺乏DHPR和RyR的双敲除小鼠的diaphragm肌和后肢衍生的原代培养物中存在钙释放单位。交界处显示外膜和SR之间的耦合,以及三联蛋白和钙螯合蛋白的含量和分布看似正常。因此,缺乏DHPR和RyR不会影响SR表面对接,将三联蛋白和钙螯合蛋白靶向到连接SR域和后两个蛋白的结构组织。有趣的是,与任一单个敲除突变相比,同时缺少两种主要的激发-收缩偶联蛋白会导致隔膜中钙释放单位频率的降低。

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