Alshudukhi Abdullah A, Zhu Jing, Huang Dengtong, Jama Abdulrahman, Smith Jeffrey D, Wang Qing Jun, Esser Karyn A, Ren Hongmei
Department of Biochemistry and Molecular Biology, Wright State University, Dayton, Ohio, USA.
Cardiovascular Research Center, University of Kentucky, Lexington, Kentucky, USA.
FASEB J. 2018 Dec;32(12):6796-6807. doi: 10.1096/fj.201800374. Epub 2018 Jun 25.
Autophagy of mitochondria (mitophagy) is essential for maintaining muscle mass and healthy skeletal muscle. Patients with heritable phosphatidic acid phosphatase lipin-1-null mutations present with severe rhabdomyolysis and muscle atrophy in glycolytic muscle fibers, which are accompanied with mitochondrial aggregates and reduced mitochondrial cytochrome c oxidase activity. However, the underlying mechanisms leading to muscle atrophy as a result of lipin-1 deficiency are still not clear. In this study, we found that lipin-1 deficiency in mice is associated with a marked accumulation of abnormal mitochondria and autophagic vacuoles in glycolytic muscle fibers. Our studies using lipin-1-deficient myoblasts suggest that lipin-1 participates in B-cell leukemia (BCL)-2 adenovirus E1B 19 kDa protein-interacting protein 3 (Bnip3)-regulated mitophagy by interacting with microtubule-associated protein 1A/1B-light chain (LC)3, which is an important step in the recruitment of mitochondria to nascent autophagosomes. The requirement of lipin-1 for Bnip3-mediated mitophagy was further verified in vivo in lipin-1-deficient green fluorescent protein-LC3 transgenic mice (lipin-1-GFP-LC3). Finally, we showed that lipin-1 deficiency in mice resulted in defective mitochondrial adaptation to starvation-induced metabolic stress and impaired contractile muscle force in glycolytic muscle fibers. In summary, our study suggests that deregulated mitophagy arising from lipin-1 deficiency is associated with impaired muscle function and may contribute to muscle rhabdomyolysis in humans.-Alshudukhi, A. A., Zhu, J., Huang, D., Jama, A., Smith, J. D., Wang, Q. J., Esser, K. A., Ren, H. Lipin-1 regulates Bnip3-mediated mitophagy in glycolytic muscle.
线粒体自噬(mitophagy)对于维持肌肉质量和健康的骨骼肌至关重要。患有遗传性磷脂酸磷酸酶lipin-1基因缺失突变的患者,其糖酵解型肌纤维会出现严重的横纹肌溶解和肌肉萎缩,同时伴有线粒体聚集以及线粒体细胞色素c氧化酶活性降低。然而,lipin-1缺乏导致肌肉萎缩的潜在机制仍不清楚。在本研究中,我们发现小鼠lipin-1缺乏与糖酵解型肌纤维中异常线粒体和自噬泡的显著积累有关。我们使用lipin-1缺陷型成肌细胞进行的研究表明,lipin-1通过与微管相关蛋白1A/1B轻链(LC)3相互作用,参与B细胞白血病(BCL)-2腺病毒E1B 19 kDa蛋白相互作用蛋白3(Bnip3)调节的线粒体自噬,这是线粒体募集到新生自噬体的重要步骤。在lipin-1缺陷型绿色荧光蛋白-LC3转基因小鼠(lipin-1-GFP-LC3)中,体内实验进一步验证了lipin-1对Bnip3介导的线粒体自噬的需求。最后,我们表明小鼠lipin-1缺乏导致线粒体对饥饿诱导的代谢应激的适应性缺陷,以及糖酵解型肌纤维收缩力受损。总之,我们的研究表明,lipin-1缺乏引起的线粒体自噬失调与肌肉功能受损有关,可能导致人类肌肉横纹肌溶解。-阿尔舒杜基,A.A.,朱,J.,黄,D.,贾马,A.,史密斯,J.D.,王,Q.J.,埃塞尔,K.A.,任,H. Lipin-1调节糖酵解型肌肉中Bnip3介导的线粒体自噬 。