Chen Jingjuan, Yue Feng, Kim Kun Ho, Zhu Peipei, Qiu Jiamin, Tao W Andy, Kuang Shihuan
Department of Animal Sciences, Purdue University, West Lafayette, IN 47907, USA.
Department of Animal Sciences, University of Florida, Gainesville, FL 32611, USA.
bioRxiv. 2023 Aug 5:2023.08.03.551853. doi: 10.1101/2023.08.03.551853.
Mitochondria are not only essential for energy production in eukaryocytes but also a key regulator of intracellular signaling. Here, we report an unappreciated role of mitochondria in regulating cytosolic protein translation in skeletal muscle cells (myofibers). We show that the expression of mitochondrial protein FAM210A (Family With Sequence Similarity 210 Member A) is positively associated with muscle mass in mice and humans. Muscle-specific -driven knockout () in mice reduces mitochondrial density and function, leading to progressive muscle atrophy and premature death. Metabolomic and biochemical analyses reveal that reverses the oxidative TCA cycle towards the reductive direction, resulting in acetyl-CoA accumulation and hyperacetylation of cytosolic proteins. Specifically, hyperacetylation of several ribosomal proteins leads to disassembly of ribosomes and translational defects. Transplantation of mitochondria into wildtype myoblasts is sufficient to elevate protein acetylation in recipient cells. These findings reveal a novel crosstalk between the mitochondrion and ribosome mediated by FAM210A.
线粒体不仅对真核细胞中的能量产生至关重要,而且是细胞内信号传导的关键调节因子。在此,我们报告了线粒体在调节骨骼肌细胞(肌纤维)胞质蛋白翻译方面一个未被重视的作用。我们发现线粒体蛋白FAM210A(序列相似性家族210成员A)的表达与小鼠和人类的肌肉质量呈正相关。小鼠中肌肉特异性驱动的基因敲除()会降低线粒体密度和功能,导致进行性肌肉萎缩和过早死亡。代谢组学和生化分析表明,会使氧化型三羧酸循环向还原方向逆转,导致乙酰辅酶A积累和胞质蛋白过度乙酰化。具体而言,几种核糖体蛋白的过度乙酰化会导致核糖体解体和翻译缺陷。将基因敲除小鼠的线粒体移植到野生型成肌细胞中足以提高受体细胞中的蛋白乙酰化水平。这些发现揭示了由FAM210A介导的线粒体与核糖体之间的新型相互作用。