Department of Biochemistry and Molecular Biology, Wright State University, Dayton, OH, USA.
Department of Biological Sciences, Wright State University, Dayton, OH, USA.
Physiol Rep. 2020 Oct;8(20):e14620. doi: 10.14814/phy2.14620.
Mutations in lipin1 are suggested to be a common cause of massive rhabdomyolysis episodes in children; however, the molecular mechanisms involved in the regulation of myofiber death caused by the absence of lipin1 are not fully understood. Loss of membrane integrity is considered as an effective inducer of cell death in muscular dystrophy. In this study, we utilized a mouse line with selective homozygous lipin1 deficiency in the skeletal muscle (Lipin1 ) to determine the role of compromised membrane integrity in the myofiber death in lipin1-deficient muscles. We found that Lipin1 muscles had significantly elevated proapoptotic factors (Bax, Bak, and cleaved caspase-9) and necroptotic proteins such as RIPK1, RIPK3, and MLKL compared with WT mice. Moreover, Lipin1 muscle had significantly higher membrane disruptions, as evidenced by increased IgG staining and elevated uptake of Evans Blue Dye (EBD) and increased serum creatine kinase activity in Lipin1 muscle fibers. EBD-positive fibers were strongly colocalized with apoptotic or necroptotic myofibers, suggesting an association between compromised plasma membrane integrity and cell death pathways. We further show that the absence of lipin1 leads to a significant decrease in the absolute and specific muscle force (normalized to muscle mass). Our work indicates that apoptosis and necroptosis are associated with a loss of membrane integrity in Lipin1 muscle and that myofiber death and dysfunction may cause a decrease in contractile force.
脂肪酶基因 1 (Lipin1) 的突变被认为是导致儿童横纹肌溶解症发作的常见原因;然而,缺乏脂肪酶基因 1 导致肌纤维死亡的分子机制尚不完全清楚。膜完整性的丧失被认为是肌肉疾病中细胞死亡的有效诱导剂。在这项研究中,我们利用骨骼肌中选择性纯合脂肪酶基因 1 缺失的小鼠品系(Lipin1 )来确定膜完整性受损在脂肪酶基因 1 缺失肌肉中肌纤维死亡中的作用。我们发现,与野生型小鼠相比,Lipin1 肌肉中的促凋亡因子(Bax、Bak 和 cleaved caspase-9)和坏死性蛋白(如 RIPK1、RIPK3 和 MLKL)显著升高。此外,Lipin1 肌肉的膜破坏明显增加,如 IgG 染色增加、伊文思蓝染料(EBD)摄取增加和血清肌酸激酶活性升高。EBD 阳性纤维与凋亡或坏死性肌纤维强烈共定位,提示质膜完整性受损与细胞死亡途径之间存在关联。我们进一步表明,缺乏脂肪酶基因 1 导致绝对和特定肌肉力量(按肌肉质量归一化)显著下降。我们的工作表明,凋亡和坏死性细胞死亡与 Lipin1 肌肉中膜完整性的丧失有关,肌纤维死亡和功能障碍可能导致收缩力下降。