Department of Cardiology and Pneumology, Heart Center, University Medical Center Göttingen, Göttingen, Germany.
DZHK (German Center for Cardiovascular Research), Partner Site Göttingen, Göttingen, Germany.
J Transl Med. 2022 May 14;20(1):229. doi: 10.1186/s12967-022-03418-3.
Molecular chaperones assist protein folding, facilitate degradation of misfolded polypeptides, and thereby maintain protein homeostasis. Impaired chaperone activity leads to defective protein quality control that is implicated in multiple skeletal muscle diseases. The heat shock protein A4 (HSPA4) acts as a co-chaperone for HSP70. Previously, we showed that Hspa4 deletion causes impaired protein homeostasis in the heart. However, its functional role in skeletal muscle has not been explored.
We performed a comparative phenotypic and biochemical analyses of Hspa4 knockout (KO) mice with wild-type (WT) littermates.
HSPA4 is markedly upregulated in regenerating WT muscle in vivo, and in differentiated myoblasts in vitro. Hspa4-KO mice are marked by growth retardation and increased variability in body weight, accompanied by 35% mortality rates during the peri-weaning period. The surviving Hspa4-KO mice experienced progressive skeletal muscle myopathy, characterized by increased number of muscle fibers with centralized nuclei, heterogeneous myofiber size distribution, inflammatory cell infiltrates and upregulation of embryonic and perinatal myosin heavy chain transcripts. Hspa4-KO muscles demonstrated an accumulation of autophagosome-associated proteins including microtubule associated protein1 light chain 3-II (LC3-II) and p62/sequestosome accompanied by increased number of TUNEL-positive nuclei.
Our findings underscore the indispensable role of HSPA4 in maintenance of muscle integrity through contribution in skeletal muscle autophagy and apoptosis, which might provide a novel therapeutic strategy for skeletal muscle morbidities.
分子伴侣协助蛋白质折叠,促进错误折叠多肽的降解,从而维持蛋白质的内稳态。伴侣活性受损导致蛋白质质量控制缺陷,这与多种骨骼肌疾病有关。热休克蛋白 A4(HSPA4)作为 HSP70 的共伴侣发挥作用。先前,我们发现 Hspa4 缺失会导致心脏中蛋白质内稳态受损。然而,其在骨骼肌中的功能作用尚未被探索。
我们对 Hspa4 敲除(KO)小鼠与野生型(WT)同窝仔进行了比较表型和生化分析。
HSPA4 在体内再生的 WT 肌肉中和体外分化的成肌细胞中明显上调。Hspa4-KO 小鼠表现为生长迟缓,体重变化增加,围产期死亡率高达 35%。幸存的 Hspa4-KO 小鼠经历进行性骨骼肌肌病,其特征是肌纤维数量增加,中央核化,肌纤维大小分布不均,炎症细胞浸润和胚胎和围产期肌球蛋白重链转录物上调。Hspa4-KO 肌肉显示自噬体相关蛋白的积累,包括微管相关蛋白 1 轻链 3-II(LC3-II)和 p62/自噬体,同时 TUNEL 阳性核的数量增加。
我们的研究结果强调了 HSPA4 通过参与骨骼肌自噬和凋亡对维持肌肉完整性的不可或缺的作用,这可能为骨骼肌疾病提供一种新的治疗策略。