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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Calsequestrin binds to monomeric and complexed forms of key calcium-handling proteins in native saroplasmic reticulum membranes from rabbit skeletal muscle
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Calsequestrin binds to monomeric and complexed forms of key calcium-handling proteins in native saroplasmic reticulum membranes from rabbit skeletal muscle

机译:Calsequestrin结合兔骨骼肌天然质膜网膜中关键钙处理蛋白的单体和复合形式

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摘要

Ca~(2+)-handling proteins are important regulators of the excitation-contraction-relaxation cycle in skeletal muscle fibres. Although domain binding studies suggest protein coupling between various Ca~(2+)-regulatory elements of triad junctions, no direct biochemical evidence exists demonstrating high-molecular-mass complex formation in native microsomal membranes. Calsequestrin represents the protein backbone of the luminal Ca~(2+) reservoir and thereby occupies a central position in Ca~(2+) homeostasis; we therefore used calsequestrin blot overlay assays in order to determine complex formation between sarcoplasmic reticulum components. Peroxidase-conjugated calsequestrin clearly labelled four major protein bands in one-dimensional (1D) and 2D electrophoretically separated membrane preparations from adult skeletal muscle. Immunoblotting identified the calsequestrin-binding proteins of approximately 26, 63, 94 and 560 kDa as junction, calsequestrin itself, triadin and the ryanodine receptor, respectively. Protein-protein coupling could be modified by ionic detergents, non-ionic detergents, changes in Ca~(2+) concentration, as well as antibody and purified calsequestrin binding. Importantly, complex formation as determined by blot overlay assays was confirmed by differential co-immunoprecipitation experiments and chemical crosslinking analysis. Hence, the key Ca~(2+)-regulatory membrane components of skeletal muscle form a supramolecular membrane assembly. The formation of this tightly associated junctional sarcoplasmic reticulum complex seems to underlie the physiological regulation of skeletal muscle contraction and relaxation, which supports the biochemical concept that Ca~(2+) homeostasis is regulated by direct protein-protein interactions.
机译:Ca〜(2+)处理蛋白是骨骼肌纤维中兴奋-收缩-松弛循环的重要调控因子。尽管结构域结合研究表明三联体连接的各种Ca〜(2 +)-调节元件之间存在蛋白质偶联,但尚无直接的生化证据表明在天然微粒体膜中形成了高分子质量的复合物。 Calsequestrin代表腔Ca〜(2+)储库的蛋白质骨架,因此在Ca〜(2+)稳态中处于中心位置;因此,为了确定肌浆网成分之间的复合物形成,我们使用了Calsequestrin印迹重叠分析。过氧化物酶偶联的钙螯合蛋白清楚地标记了成人骨骼肌的一维(1D)和2D电泳分离膜制剂中的四个主要蛋白带。免疫印迹鉴定出约26、63、94和560 kDa的钙网蛋白结合蛋白分别是连接蛋白,钙网蛋白本身,三联蛋白和ryanodine受体。蛋白质-蛋白质偶联可以通过离子去污剂,非离子去污剂,Ca〜(2+)浓度的变化以及抗体和纯化的钙锚蛋白的结合而改变。重要的是,通过差示免疫共沉淀实验和化学交联分析证实了通过印迹覆盖测定法确定的复合物形成。因此,骨骼肌的关键Ca〜(2+)调节膜成分形成了超分子膜组件。这种紧密联系的结节质网复合物的形成似乎是骨骼肌收缩和松弛的生理调节的基础,这支持了Ca〜(2+)稳态由直接蛋白-蛋白相互作用调节的生化概念。

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