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首页> 外文期刊>The Biochemical Journal >Cross-linking analysis of the ryanodine receptor and alpha1-dihydropyridine receptor in rabbit skeletal muscle triads.
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Cross-linking analysis of the ryanodine receptor and alpha1-dihydropyridine receptor in rabbit skeletal muscle triads.

机译:兔骨骼肌三联体中的ryanodine受体和α1-dihydropyridine受体的交联分析。

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In mature skeletal muscle, excitation-contraction (EC) coupling is thought to be mediated by direct physical interactions between the transverse tubular, voltage-sensing dihydropyridine receptor (DHPR) and the ryanodine receptor (RyR) Ca2+ release channel of the sarcoplasmic reticulum (SR). Although previous attempts at demonstrating interactions between purified RyR and alpha1-DHPR have failed, the cross-linking analysis shown here indicates low-level complex formation between the SR RyR and the junctional alpha1-DHPR. After cross-linking of membranes highly enriched in triads with dithiobis-succinimidyl propionate, distinct complexes of more than 3000 kDa were detected. This agrees with numerous physiological and electron-microscopic findings, as well as co-immunoprecipitation experiments with triad receptors and receptor domain-binding studies. However, a distinct overlap of immunoreactivity between receptors was not observed in crude microsomal preparations, indicating that the triad complex is probably of low abundance. Disulphide-bonded, high-molecular-mass clusters of triadin, the junctional protein proposed to mediate interactions in triads, were confirmed to be linked to the RyR. Calsequestrin and the SR Ca2+-ATPase were not found in cross-linked complexes of the RyR and alpha1-DHPR. Thus, whereas recent studies indicate that the two receptors exhibit temporal differences in their developmental inductions and that receptor interactions are not essential for the formation and maintenance of triads, this study supports the signal transduction hypothesis of direct physical interactions between triad receptors in adult skeletal muscle.
机译:在成熟的骨骼肌中,认为兴奋-收缩(EC)耦合是由肌浆网(SR)的横管,电压感应二氢吡啶受体(DHPR)和ryanodine受体(RyR)Ca2 +释放通道之间的直接物理相互作用介导的。 )。尽管先前的尝试无法证明纯化的RyR和alpha1-DHPR之间的相互作用,但此处显示的交联分析表明SR RyR与连接的alpha1-DHPR之间形成了低水平的复合物。在三元组中高度富集的膜与二硫代双-琥珀酰亚胺基丙酸酯交联后,检测到超过3000 kDa的独特复合物。这与许多生理学和电子显微镜的发现以及三合一受体的免疫共沉淀实验和受体域结合研究相吻合。但是,在粗微粒体制剂中未观察到受体之间免疫反应的明显重叠,这表明三联体复合物的丰度可能较低。三硫精的二硫键结合的高分子簇被证实与RyR相连,该蛋白是介导三合体相互作用的结合蛋白。在RyR和alpha1-DHPR的交联复合物中未发现Calsequestrin和SR Ca2 + -ATPase。因此,尽管最近的研究表明这两种受体在它们的发育诱导中表现出时间差异,并且受体相互作用对于三联体的形成和维持不是必不可少的,但这项研究支持了成年骨骼肌中三联体受体之间直接物理相互作用的信号转导假说。 。

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