Wu Peixuan, Song Nan, Xiang Yang, Tao Zhe, Mao Bing, Guo Ruochen, Wang Xin, Wu Dan, Zhang Zhenzhen, Chen Xin, Ma Duan, Zhang Tianyu, Hao Bingtao, Ma Jing
Key Laboratory of Metabolism and Molecular Medicine, Ministry of Education, Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences; ENT institute, Department of Facial Plastic and Reconstructive Surgery, Eye & ENT Hospital; Institute of Medical Genetics & Genomics, Fudan University, Shanghai, 200032, China.
Dalian Women and Children's Medical Group Neurology Department, Dalian, 116012, China.
EMBO Mol Med. 2025 May 23. doi: 10.1038/s44321-025-00247-x.
Congenital ptosis, a genetic disorder involving levator palpebrae muscle dysfunction, is often associated with congenital myopathy. The genetic causes of this condition remain poorly understood. In this study, we identified FOXK2 mutations in five pedigrees with congenital myopathy and ptosis through whole exome sequencing and Sanger sequencing. Zebrafish with foxk2 deficiency exhibited underdeveloped skeletal muscles and reduced mobility, while mice with Foxk2 deletion in skeletal muscle stem cells (MuSCs) showed generalized skeletal muscle abnormalities. Further analysis revealed that FOXK2 deficiency impaired myogenic differentiation in C2C12 cells and disrupted mitochondrial homeostasis in both mouse MuSCs and C2C12 cells. Rescue experiments confirmed the loss-of-function effects of FOXK2 mutation. Coenzyme Q10 treatment improved mitochondrial function and alleviated skeletal muscle development defects in Foxk2-deficient mice. Preliminary omics analysis suggested FOXK2 directly regulates the expression of mitochondrial function-related genes by modulating chromatin accessibility at its binding sites. Our study identifies FOXK2 as a novel pathogenic gene for congenital myopathy with ptosis and highlights its essential role in skeletal muscle development and mitochondrial homeostasis, offering insights for potential diagnostics and therapies.
先天性上睑下垂是一种涉及提上睑肌功能障碍的遗传性疾病,常与先天性肌病相关。这种疾病的遗传原因仍知之甚少。在本研究中,我们通过全外显子组测序和桑格测序,在五个患有先天性肌病和上睑下垂的家系中鉴定出FOXK2突变。foxk2缺乏的斑马鱼表现出骨骼肌发育不全和运动能力下降,而骨骼肌干细胞(MuSCs)中Foxk2缺失的小鼠则表现出全身性骨骼肌异常。进一步分析表明,FOXK2缺乏会损害C2C12细胞的成肌分化,并破坏小鼠MuSCs和C2C12细胞中的线粒体稳态。拯救实验证实了FOXK2突变的功能丧失效应。辅酶Q10治疗改善了Foxk2缺陷小鼠的线粒体功能,并减轻了骨骼肌发育缺陷。初步的组学分析表明,FOXK2通过调节其结合位点的染色质可及性直接调控线粒体功能相关基因的表达。我们的研究确定FOXK2是先天性肌病伴上睑下垂的一个新的致病基因,并突出了其在骨骼肌发育和线粒体稳态中的重要作用,为潜在的诊断和治疗提供了思路。