首页> 美国卫生研究院文献>The Journal of General Physiology >Triadin Binding to the C-Terminal Luminal Loop of the Ryanodine Receptor is Important for Skeletal Muscle Excitation–Contraction Coupling
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Triadin Binding to the C-Terminal Luminal Loop of the Ryanodine Receptor is Important for Skeletal Muscle Excitation–Contraction Coupling

机译:Triadin绑定到Ryanodine受体的C末端发光环对于骨骼肌兴奋-收缩偶联很重要。

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摘要

Ca2+ release from intracellular stores is controlled by complex interactions between multiple proteins. Triadin is a transmembrane glycoprotein of the junctional sarcoplasmic reticulum of striated muscle that interacts with both calsequestrin and the type 1 ryanodine receptor (RyR1) to communicate changes in luminal Ca2+ to the release machinery. However, the potential impact of the triadin association with RyR1 in skeletal muscle excitation–contraction coupling remains elusive. Here we show that triadin binding to RyR1 is critically important for rapid Ca2+ release during excitation–contraction coupling. To assess the functional impact of the triadin-RyR1 interaction, we expressed RyR1 mutants in which one or more of three negatively charged residues (D4878, D4907, and E4908) in the terminal RyR1 intraluminal loop were mutated to alanines in RyR1-null (dyspedic) myotubes. Coimmunoprecipitation revealed that triadin, but not junctin, binding to RyR1 was abolished in the triple (D4878A/D4907A/E4908A) mutant and one of the double (D4907A/E4908A) mutants, partially reduced in the D4878A/D4907A double mutant, but not affected by either individual (D4878A, D4907A, E4908A) mutations or the D4878A/E4908A double mutation. Functional studies revealed that the rate of voltage- and ligand-gated SR Ca2+ release were reduced in proportion to the degree of interruption in triadin binding. Ryanodine binding, single channel recording, and calcium release experiments conducted on WT and triple mutant channels in the absence of triadin demonstrated that the luminal loop mutations do not directly alter RyR1 function. These findings demonstrate that junctin and triadin bind to different sites on RyR1 and that triadin plays an important role in ensuring rapid Ca2+ release during excitation–contraction coupling in skeletal muscle.
机译:Ca 2 + 从细胞内储存的释放受多种蛋白质之间复杂相互作用的控制。 Triadin是横纹肌的连接肌浆网的跨膜糖蛋白,与钙螯蛋白和1型ryanodine受体(RyR1)相互作用,将腔内Ca 2 + 的变化传达给释放机构。然而,三联蛋白与RyR1联结对骨骼肌兴奋-收缩耦合的潜在影响仍然难以捉摸。在这里,我们表明三联蛋白与RyR1的结合对于在激发-收缩偶联过程中快速释放Ca 2 + 至关重要。为了评估三联蛋白-RyR1相互作用的功能影响,我们表达了RyR1突变体,其中在RyR1腔内环末端的三个带负电的残基(D4878,D4907和E4908)中的一个或多个突变为RyR1-null(二倍体)中的丙氨酸)的肌管。免疫共沉淀显示三联体(D4878A / D4907A / E4908A)突变体和双突变体(D4907A / E4908A)突变体中的三联蛋白(而不是juntin)与RyR1的结合被取消,但在D4878A / D4907A双重突变体中部分减少了,但不受影响单个突变(D4878A,D4907A,E4908A)或D4878A / E4908A双重突变。功能研究表明,电压和配体门控的SR Ca 2 + 释放速率与三联蛋白结合的中断程度成比例地降低。 Ryanodine结合,单通道记录和钙释放实验在不存在triadin的情况下在WT和三突变体通道上进行,证明了腔环突变不会直接改变RyR1功能。这些发现表明,juntintin和triadin结合在RyR1的不同位点上,并且triadin在确保骨骼肌的兴奋-收缩偶联过程中Ca 2 + 的快速释放中起着重要作用。

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