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Triadin/Junctin Double Null Mouse Reveals a Differential Role for Triadin and Junctin in Anchoring CASQ to the jSR and Regulating Ca2+ Homeostasis

机译:Triadin / Junctin双空小鼠揭示了Triadin和Junctin在将CASQ锚定到jSR和调节Ca2 +动态平衡方面的不同作用。

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摘要

Triadin (Tdn) and Junctin (Jct) are structurally related transmembrane proteins thought to be key mediators of structural and functional interactions between calsequestrin (CASQ) and ryanodine receptor (RyRs) at the junctional sarcoplasmic reticulum (jSR). However, the specific contribution of each protein to the jSR architecture and to excitation-contraction (e-c) coupling has not been fully established. Here, using mouse models lacking either Tdn (Tdn-null), Jct (Jct-null) or both (Tdn/Jct-null), we identify Tdn as the main component of periodically located anchors connecting CASQ to the RyR-bearing jSR membrane. Both proteins proved to be important for the structural organization of jSR cisternae and retention of CASQ within them, but with different degrees of impact. Our results also suggest that the presence of CASQ is responsible for the wide lumen of the jSR cisternae. Using Ca2+ imaging and Ca2+ selective microelectrodes we found that changes in e-c coupling, SR Ca2+content and resting [Ca2+] in Jct, Tdn and Tdn/Jct-null muscles are directly correlated to the effect of each deletion on CASQ content and its organization within the jSR. These data suggest that in skeletal muscle the disruption of Tdn/CASQ link has a more profound effect on jSR architecture and myoplasmic Ca2+ regulation than Jct/CASQ association.
机译:Triadin(Tdn)和Junctin(Jct)是结构相关的跨膜蛋白,被认为是结节肌质网(jSR)上的钙网蛋白(CASQ)和ryanodine受体(RyRs)之间结构和功能相互作用的关键介体。但是,尚未完全确定每种蛋白质对jSR结构和对激发-收缩(e-c)偶联的特定作用。在这里,使用缺少Tdn(Tdn-null),Jct(Jct-null)或两者都不存在(Tdn / Jct-null)的小鼠模型,我们将Tdn识别为周期性定位锚的主要成分,这些锚将CASQ连接到带有RyR的jSR膜。两种蛋白都被证明对jSR池的结构组织和CASQ在其中的保留很重要,但是影响程度不同。我们的研究结果还表明,CASQ的存在是造成jSR气罐宽腔的原因。使用Ca2 +成像和Ca2 +选择性微电极,我们发现Jct,Tdn和Tdn / Jct-null肌肉中ec耦合,SR Ca2 +含量和静息[Ca2 +]的变化与每个缺失对CASQ含量及其组织的影响直接相关。在jSR中。这些数据表明,在骨骼肌中,与Jct / CASQ关联相比,Tdn / CASQ链的破坏对jSR结构和肌质Ca2 +调节的影响更大。

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