Department of Cellular and Molecular Medicine, 1656 E Mabel Street, University of Arizona, Tucson, AZ 85724, USA.
Department of Physiology, Amsterdam UMC, Location VUMC, 1081 HV Amsterdam, The Netherlands.
Int J Mol Sci. 2022 Jul 23;23(15):8113. doi: 10.3390/ijms23158113.
Nemaline myopathy (NM) is characterized by skeletal muscle weakness and atrophy. No curative treatments exist for this debilitating disease. NM is caused by mutations in proteins involved in thin-filament function, turnover, and maintenance. Mutations in nebulin, encoded by NEB, are the most common cause. Skeletal muscle atrophy is tightly linked to upregulation of MuRF1, an E3 ligase, that targets proteins for proteasome degradation. Here, we report a large increase in MuRF1 protein levels in both patients with nebulin-based NM, also named NEM2, and in mouse models of the disease. We hypothesized that knocking out MuRF1 in animal models of NM with muscle atrophy would ameliorate the muscle deficits. To test this, we crossed MuRF1 KO mice with two NEM2 mouse models, one with the typical form and the other with the severe form. The crosses were viable, and muscles were studied in mice at 3 months of life. Ultrastructural examination of gastrocnemius muscle lacking MuRF1 and with severe NM revealed a small increase in vacuoles, but no significant change in the myofibrillar fractional area. MuRF1 deficiency led to increased weights of various muscle types in the NM models. However, this increase in muscle size was not associated with increased in vivo or in vitro force production. We conclude that knocking out MuRF1 in NEM2 mice increases muscle size, but does not improve muscle function.
先天性肌营养不良症(NM)的特征是骨骼肌无力和萎缩。目前,针对这种使人衰弱的疾病还没有有效的治疗方法。NM 是由参与细丝功能、周转和维持的蛋白的突变引起的。编码nebulin 的 NEB 基因突变是最常见的原因。骨骼肌萎缩与 MuRF1 的上调密切相关,MuRF1 是一种 E3 连接酶,可将蛋白靶向蛋白酶体降解。在这里,我们报告了在基于 nebulin 的 NM(也称为 NEM2)患者以及疾病的小鼠模型中,MuRF1 蛋白水平的大幅增加。我们假设在伴有肌肉萎缩的 NM 动物模型中敲除 MuRF1 会改善肌肉缺陷。为了验证这一点,我们将 MuRF1 KO 小鼠与两种 NEM2 小鼠模型杂交,一种是典型形式,另一种是严重形式。杂交是可行的,并且在 3 个月大的小鼠中研究了肌肉。对缺乏 MuRF1 和严重 NM 的腓肠肌进行超微结构检查显示,空泡略有增加,但肌原纤维分数面积没有明显变化。MuRF1 缺乏导致 NM 模型中各种肌肉类型的重量增加。然而,这种肌肉大小的增加与体内或体外力产生的增加无关。我们得出结论,在 NEM2 小鼠中敲除 MuRF1 会增加肌肉大小,但不能改善肌肉功能。