Muriel Joaquin, Lukyanenko Valeriy, Kwiatkowski Thomas A, Li Yi, Bhattacharya Sayak, Banford Kassidy K, Garman Daniel, Bulgart Hannah R, Sutton Roger B, Weisleder Noah, Bloch Robert J
Department of Physiology, University of Maryland School of Medicine, Baltimore, MD 21201, USA.
Department of Physiology and Cell Biology, The Ohio State University, Columbus, OH 43210, USA.
Mol Ther Methods Clin Dev. 2024 Apr 26;32(2):101257. doi: 10.1016/j.omtm.2024.101257. eCollection 2024 Jun 13.
Mutations in the gene, encoding the protein dysferlin, lead to several forms of muscular dystrophy. In healthy skeletal muscle, dysferlin concentrates in the transverse tubules and is involved in repairing the sarcolemma and stabilizing Ca signaling after membrane disruption. The gene encodes 7-8 C2 domains, several Fer and Dysf domains, and a C-terminal transmembrane sequence. Because its coding sequence is too large to package in adeno-associated virus, the full-length sequence is not amenable to current gene delivery methods. Thus, we have examined smaller versions of dysferlin, termed "nanodysferlins," designed to eliminate several C2 domains, specifically C2 domains D, E, and F; B, D, and E; and B, D, E, and F. We also generated a variant by replacing eight amino acids in C2G in the nanodysferlin missing domains D through F. We electroporated dysferlin-null A/J mouse myofibers with Venus fusion constructs of these variants, or as untagged nanodysferlins together with GFP, to mark transfected fibers We found that, although these nanodysferlins failed to concentrate in transverse tubules, three of them supported membrane repair after laser wounding while all four bound the membrane repair protein, TRIM72/MG53, similar to WT dysferlin. By contrast, they failed to suppress Ca waves after myofibers were injured by mild hypoosmotic shock. Our results suggest that the internal C2 domains of dysferlin are required for normal t-tubule localization and Ca signaling and that membrane repair does not require these C2 domains.
编码dysferlin蛋白的基因突变会导致多种形式的肌肉萎缩症。在健康的骨骼肌中,dysferlin集中在横管中,并参与肌膜修复以及膜破裂后稳定钙信号。该基因编码7 - 8个C2结构域、几个Fer和Dysf结构域以及一个C末端跨膜序列。由于其编码序列太大,无法包装进腺相关病毒,因此全长序列不适用于当前的基因递送方法。于是,我们研究了dysferlin的较小版本,即“纳米dysferlin”,设计时去除了几个C2结构域,特别是C2结构域D、E和F;B、D和E;以及B、D、E和F。我们还通过替换纳米dysferlin缺失结构域D至F的C2G中的八个氨基酸产生了一个变体。我们用这些变体的Venus融合构建体,或作为未标记的纳米dysferlin与绿色荧光蛋白(GFP)一起电穿孔导入dysferlin基因缺失的A/J小鼠肌纤维,以标记转染的纤维。我们发现,尽管这些纳米dysferlin未能集中在横管中,但其中三个在激光损伤后支持膜修复,而所有四个都与膜修复蛋白TRIM72/MG53结合,这与野生型dysferlin相似。相比之下,在肌纤维受到轻度低渗休克损伤后,它们未能抑制钙波。我们的结果表明,dysferlin的内部C2结构域是正常横管定位和钙信号所必需的,而膜修复不需要这些C2结构域。