Department of Biochemistry and Cell Biology, Max Perutz Laboratories, University of Vienna, 1030 Vienna, Austria.
Division of Cell and Developmental Biology, Center for Anatomy and Cell Biology, Medical University of Vienna, 1090 Vienna, Austria.
Cells. 2023 Apr 26;12(9):1259. doi: 10.3390/cells12091259.
Plectin, a highly versatile cytolinker protein, is crucial for myofiber integrity and function. Accordingly, mutations in the human gene () cause several rare diseases, denoted as plectinopathies, with most of them associated with progressive muscle weakness. Of several plectin isoforms expressed in skeletal muscle and the heart, P1d is the only isoform expressed exclusively in these tissues. Using high-resolution stimulated emission depletion (STED) microscopy, here we show that plectin is located within the gaps between individual α-actinin-positive Z-disks, recruiting and bridging them to desmin intermediate filaments (IFs). Loss of plectin in myofibril bundles led to a complete loss of desmin IFs. Loss of Z-disk-associated plectin isoform P1d led to disorganization of muscle fibers and slower relaxation of myofibrils upon mechanical strain, in line with an observed inhomogeneity of muscle ultrastructure. In addition to binding to α-actinin and thereby providing structural support, P1d forms a scaffolding platform for the chaperone-assisted selective autophagy machinery (CASA) by directly interacting with HSC70 and synpo2. In isoform-specific knockout (P1d-KO) mouse muscle and mechanically stretched plectin-deficient myoblasts, we found high levels of undigested filamin C, a bona fide substrate of CASA. Similarly, subjecting P1d-KO mice to forced swim tests led to accumulation of filamin C aggregates in myofibers, highlighting a specific role of P1d in tension-induced proteolysis activated upon high loads of physical exercise and muscle contraction.
Plectin 是一种多功能细胞连接蛋白,对于肌纤维的完整性和功能至关重要。因此,人类基因中的突变会导致几种罕见疾病,称为 plectinopathies,其中大多数与进行性肌肉无力有关。在骨骼肌和心脏中表达的几种 plectin 同工型中,P1d 是唯一在这些组织中特异性表达的同工型。使用高分辨率受激发射损耗(STED)显微镜,我们在这里显示 plectin 位于单个α-肌动蛋白阳性 Z 盘之间的间隙内,招募并将它们桥接到结蛋白中间丝(IFs)。肌原纤维束中 plectin 的缺失导致结蛋白 IF 的完全缺失。Z 盘相关 plectin 同工型 P1d 的缺失导致肌纤维的紊乱和机械应变时肌原纤维的松弛减慢,与观察到的肌肉超微结构的不均匀性一致。除了与α-肌动蛋白结合从而提供结构支持外,P1d 还通过直接与 HSC70 和 synpo2 相互作用,形成伴侣辅助选择性自噬机制(CASA)的支架平台。在同工型特异性敲除(P1d-KO)小鼠肌肉和机械拉伸的缺乏 plectin 的成肌细胞中,我们发现未经消化的原肌球蛋白 C 的水平很高,原肌球蛋白 C 是 CASA 的一个真正的底物。同样,使 P1d-KO 小鼠进行强迫游泳测试导致肌纤维中 filamin C 聚集物的积累,突出了 P1d 在高强度体力活动和肌肉收缩引起的张力诱导的蛋白水解中的特定作用。