Department of Integrative Physiology, Baylor College of Medicine, Houston, TX, 77096, USA.
Department of Biochemistry, Baylor College of Medicine, Houston, TX, 77096, USA.
Commun Biol. 2023 Sep 14;6(1):942. doi: 10.1038/s42003-023-05330-y.
Here we show that striated muscle preferentially expressed protein kinase α (Spegα) maintains cardiac function in hearts with Spegβ deficiency. Speg is required for stability of excitation-contraction coupling (ECC) complexes and interacts with esterase D (Esd), Cardiomyopathy-Associated Protein 5 (Cmya5), and Fibronectin Type III and SPRY Domain Containing 2 (Fsd2) in cardiac and skeletal muscle. Mice with a sequence encoding a V5/HA tag inserted into the first exon of the Speg gene (HA-Speg mice) display a >90% decrease in Spegβ but Spegα is expressed at ~50% of normal levels. Mice deficient in both Spegα and Speg β (Speg KO mice) develop a severe dilated cardiomyopathy and muscle weakness and atrophy, but HA-Speg mice display mild muscle weakness with no cardiac involvement. Spegα in HA-Speg mice suppresses Ca leak, proteolytic cleavage of Jph2, and disruption of transverse tubules. Despite it's low levels, HA-Spegβ immunoprecipitation identified Esd, Cmya5 and Fsd2 as Spegβ binding partners that localize to triads and dyads to stabilize ECC complexes. This study suggests that Spegα and Spegβ display functional redundancy, identifies Esd, Cmya5 and Fsd2 as components of both cardiac dyads and skeletal muscle triads and lays the groundwork for the identification of new therapeutic targets for centronuclear myopathy.
在这里,我们表明横纹肌特异性蛋白激酶α(Spegα)在 Spegβ 缺乏的心脏中维持心脏功能。Speg 是稳定兴奋-收缩偶联(ECC)复合物所必需的,并且在心脏和骨骼肌中与酯酶 D(Esd)、心肌病相关蛋白 5(Cmya5)和纤维连接蛋白 III 和 SPRY 结构域包含 2(Fsd2)相互作用。在 Speg 基因的第一个外显子中插入 V5/HA 标签序列的小鼠(HA-Speg 小鼠)显示 Spegβ 减少了>90%,但 Spegα 的表达水平约为正常水平的 50%。同时缺乏 Spegα 和 Spegβ 的小鼠(Speg KO 小鼠)会发展出严重的扩张型心肌病和肌肉无力和萎缩,但 HA-Speg 小鼠表现出轻度肌肉无力,没有心脏受累。HA-Speg 小鼠中的 Spegα 抑制了 Ca 渗漏、Jph2 的蛋白水解切割以及横管的破坏。尽管其水平较低,但 HA-Spegβ 的免疫沉淀鉴定出 Esd、Cmya5 和 Fsd2 是 Spegβ 的结合伴侣,它们定位于三联体和二联体以稳定 ECC 复合物。这项研究表明 Spegα 和 Spegβ 具有功能冗余性,鉴定出 Esd、Cmya5 和 Fsd2 是心脏二联体和骨骼肌三联体的组成部分,为寻找中心核肌病的新治疗靶点奠定了基础。