Department of Physiology and Medical Physics, Medical University of Innsbruck, 6020 Innsbruck, Austria.
Sci Rep. 2017 Jan 23;7:41003. doi: 10.1038/srep41003.
The adaptor protein STAC3 is essential for skeletal muscle excitation-contraction (EC) coupling and a mutation in the STAC3 gene has been linked to a severe muscle disease, Native American myopathy (NAM). However the function of STAC3, its interaction partner, and the mode of interaction within the EC-coupling complex remained elusive. Here we demonstrate that STAC3 forms a stable interaction with the voltage-sensor of EC-coupling, Ca1.1, and that this interaction depends on a hitherto unidentified protein-protein binding pocket in the C1 domain of STAC3. While the NAM mutation does not affect the stability of the STAC3-Ca1.1 interaction, mutation of two crucial residues in the C1 binding pocket increases the turnover of STAC3 in skeletal muscle triads. Thus, the C1 domain of STAC3 is responsible for its stable incorporation into the Ca1.1 complex, whereas the SH3 domain containing the NAM mutation site may be involved in low-affinity functional interactions in EC-coupling.
衔接蛋白 STAC3 对于骨骼肌兴奋-收缩(EC)偶联是必不可少的,STAC3 基因的突变与一种严重的肌肉疾病——美洲原住民肌病(NAM)有关。然而,STAC3 的功能、其相互作用伙伴以及在 EC 偶联复合物中的相互作用模式仍然难以捉摸。在这里,我们证明 STAC3 与 EC 偶联的电压传感器 Ca1.1 形成稳定的相互作用,并且这种相互作用依赖于 STAC3 的 C1 结构域中一个迄今为止尚未确定的蛋白-蛋白结合口袋。虽然 NAM 突变不会影响 STAC3-Ca1.1 相互作用的稳定性,但 C1 结合口袋中两个关键残基的突变会增加骨骼肌三联体中 STAC3 的周转率。因此,STAC3 的 C1 结构域负责其稳定掺入 Ca1.1 复合物,而含有 NAM 突变位点的 SH3 结构域可能参与 EC 偶联中的低亲和力功能相互作用。