Institute of Genetics and Molecular and Cellular Biology (IGBMC), INSERM U1258, CNRS UMR7104, University of Strasbourg, Illkirch, France.
INSERM UMR 1048, Institute of Metabolic and Cardiovascular Diseases (I2MC), Université Toulouse III Paul Sabatier, BP84225, Toulouse Cedex 04, France.
JCI Insight. 2023 May 8;8(9):e151933. doi: 10.1172/jci.insight.151933.
Phosphoinositides (PIs) are membrane lipids that regulate signal transduction and vesicular trafficking. X-linked centronuclear myopathy (XLCNM), also called myotubular myopathy, results from loss-of-function mutations in the MTM1 gene, which encodes the myotubularin phosphatidylinositol 3-phosphate (PtdIns3P) lipid phosphatase. No therapy for this disease is currently available. Previous studies showed that loss of expression of the class II phosphoinositide 3-kinase (PI3K) PI3KC2β (PI3KC2B) protein improved the phenotypes of an XLCNM mouse model. PI3Ks are well known to have extensive scaffolding functions and the importance of the catalytic activity of this PI3K for rescue remains unclear. Here, using PI3KC2β kinase-dead mice, we show that the selective inactivation of PI3KC2β kinase activity is sufficient to fully prevent muscle atrophy and weakness, histopathology, and sarcomere and triad disorganization in Mtm1-knockout mice. This rescue correlates with normalization of PtdIns3P level and mTORC1 activity, a key regulator of protein synthesis and autophagy. Conversely, lack of PI3KC2β kinase activity did not rescue the histopathology of the BIN1 autosomal CNM mouse model. Overall, these findings support the development of specific PI3KC2β kinase inhibitors to cure myotubular myopathy.
磷酸肌醇(PI)是一种调节信号转导和囊泡运输的膜脂质。X 连锁中轴性先天性肌营养不良症(XLCNM),又称肌小管肌病,是由 MTM1 基因突变导致的,该基因编码肌小管蛋白磷酸肌醇 3-磷酸(PtdIns3P)脂质磷酸酶。目前尚无针对这种疾病的治疗方法。以前的研究表明,缺失 II 类磷酸肌醇 3-激酶(PI3K)PI3KC2β(PI3KC2B)蛋白的表达改善了 XLCNM 小鼠模型的表型。PI3Ks 具有广泛的支架功能,而这种 PI3K 的催化活性对挽救的重要性尚不清楚。在这里,我们使用 PI3KC2β 激酶失活小鼠,表明 PI3KC2β 激酶活性的选择性失活足以完全防止 Mtm1 敲除小鼠的肌肉萎缩和无力、组织病理学、肌节和三联体紊乱。这种挽救与 PtdIns3P 水平和 mTORC1 活性的正常化相关,mTORC1 是蛋白质合成和自噬的关键调节剂。相反,PI3KC2β 激酶活性的缺乏不能挽救 BIN1 常染色体 CNM 小鼠模型的组织病理学。总的来说,这些发现支持开发特异性 PI3KC2β 激酶抑制剂来治疗肌小管肌病。