Institut de Myologie, Sorbonne Université, INSERM, Paris, France.
Department of Physiology, Faculty of Medicine Pitié-Salpêtrière, Sorbonne Université, Paris, France.
Elife. 2023 Apr 21;12:e84139. doi: 10.7554/eLife.84139.
Excitation-contraction coupling requires a highly specialized membrane structure, the triad, composed of a plasma membrane invagination, the T-tubule, surrounded by two sarcoplasmic reticulum terminal cisternae. Although the precise mechanisms governing T-tubule biogenesis and triad formation remain largely unknown, studies have shown that caveolae participate in T-tubule formation and mutations of several of their constituents induce muscle weakness and myopathies. Here, we demonstrate that, at the plasma membrane, Bin1 and caveolae composed of caveolin-3 assemble into ring-like structures from which emerge tubes enriched in the dihydropyridine receptor. Bin1 expression lead to the formation of both rings and tubes and we show that Bin1 forms scaffolds on which caveolae accumulate to form the initial T-tubule. Cav3 deficiency caused by either gene silencing or pathogenic mutations results in defective ring formation and perturbed Bin1-mediated tubulation that may explain defective T-tubule organization in mature muscles. Our results uncover new pathophysiological mechanisms that may prove relevant to myopathies caused by Cav3 or Bin1 dysfunction.
兴奋-收缩偶联需要高度专业化的膜结构,即三联体,由质膜内陷的 T 管组成,周围是两个肌浆网终末池。尽管调节 T 管发生和三联体形成的确切机制在很大程度上仍然未知,但研究表明 caveolae 参与 T 管的形成,并且其几个组成部分的突变会导致肌肉无力和肌病。在这里,我们证明在质膜上,Bin1 和由 caveolin-3 组成的 caveolae 组装成环状结构,从中伸出富含二氢吡啶受体的管。Bin1 的表达导致环和管的形成,我们表明 Bin1 形成支架,caveolae 在其上积累形成初始 T 管。通过基因沉默或致病突变引起的 Cav3 缺乏导致环形成缺陷和 Bin1 介导的管腔化受到干扰,这可能解释了成熟肌肉中 T 管腔组织的缺陷。我们的结果揭示了新的病理生理机制,这可能与 Cav3 或 Bin1 功能障碍引起的肌病有关。