Department of Molecular Pharmacology, Shinshu University School of Medicine, Matsumoto, Nagano 390-8621, Japan;
Department of Molecular Pharmacology, Shinshu University School of Medicine, Matsumoto, Nagano 390-8621, Japan.
Proc Natl Acad Sci U S A. 2018 Apr 24;115(17):4507-4512. doi: 10.1073/pnas.1716649115. Epub 2018 Apr 9.
Close physical association of Ca1.1 L-type calcium channels (LTCCs) at the sarcolemmal junctional membrane (JM) with ryanodine receptors (RyRs) of the sarcoplasmic reticulum (SR) is crucial for excitation-contraction coupling (ECC) in skeletal muscle. However, the molecular mechanism underlying the JM targeting of LTCCs is unexplored. Junctophilin 1 (JP1) and JP2 stabilize the JM by bridging the sarcolemmal and SR membranes. Here, we examined the roles of JPs in localization and function of LTCCs. Knockdown of JP1 or JP2 in cultured myotubes inhibited LTCC clustering at the JM and suppressed evoked Ca transients without disrupting JM structure. Coimmunoprecipitation and GST pull-down assays demonstrated that JPs physically interacted with 12-aa residues in the proximal C terminus of the Ca1.1. A JP1 mutant lacking the C terminus including the transmembrane domain (JP1ΔCT) interacted with the sarcolemmal/T-tubule membrane but not the SR membrane. Expression of this mutant in adult mouse muscles in vivo exerted a dominant-negative effect on endogenous JPs, impairing LTCC-RyR coupling at triads without disrupting JM morphology, and substantially reducing Ca transients without affecting SR Ca content. Moreover, the contractile force of the JP1ΔCT-expressed muscle was dramatically reduced compared with the control. Taken together, JPs recruit LTCCs to the JM through physical interaction and ensure robust ECC at triads in skeletal muscle.
钙通道 1.1 型 L 型钙通道 (LTCCs) 与肌质网 (SR) 的肌浆网 RyR 在连接子膜 (JM) 上的紧密物理关联对于骨骼肌的兴奋-收缩偶联 (ECC) 至关重要。然而,LTCCs 在 JM 上的靶向的分子机制尚未探索。连接蛋白 1 (JP1) 和 JP2 通过桥接肌膜和 SR 膜稳定 JM。在这里,我们研究了 JPs 在 LTCCs 定位和功能中的作用。在培养的肌管中敲低 JP1 或 JP2 会抑制 LTCC 在 JM 上的聚集,并抑制诱发的 Ca 瞬变,而不会破坏 JM 结构。免疫共沉淀和 GST 下拉测定表明 JPs 与 Ca1.1 的近 C 末端的 12-aa 残基物理相互作用。缺乏包括跨膜域在内的 C 末端的 JP1 突变体 (JP1ΔCT) 与肌膜/T 小管膜相互作用,但不与 SR 膜相互作用。该突变体在体内表达于成年小鼠肌肉中,对内源性 JPs 产生显性负效应,破坏三联体中的 LTCC-RyR 偶联,而不会破坏 JM 形态,并且 Ca 瞬变明显减少而不会影响 SR Ca 含量。此外,与对照相比,表达 JP1ΔCT 的肌肉的收缩力显著降低。总之,JPs 通过物理相互作用将 LTCCs 募集到 JM 上,并确保在骨骼肌的三联体中产生强大的 ECC。