Department of Cell Biology, Oita University Faculty of Medicine, Yufu, Oita, Japan; Department of Ophthalmology, Oita University Faculty of Medicine, Yufu, Oita, Japan.
Department of Cell Biology, Oita University Faculty of Medicine, Yufu, Oita, Japan.
Biochem Biophys Res Commun. 2020 Dec 17;533(4):1470-1476. doi: 10.1016/j.bbrc.2020.10.044. Epub 2020 Oct 24.
Exosc2 is one of the components of the exosome complex involved in RNA 3' end processing and degradation of various RNAs. Recently, EXOSC2 mutation has been reported in German families presenting short stature, hearing loss, retinitis pigmentosa, and premature aging. However, the in vivo function of EXOSC2 has been elusive. Herein, we generated Exosc2 knockout (exosc2) zebrafish that showed larval lethality 13 days post fertilization, with microcephaly, loss of spinal motor neurons, myelin deficiency, and retinitis pigmentosa. Mechanistically, Exosc2 deficiency caused impaired mRNA turnover, resulting in a nucleotide pool imbalance. Rapamycin, which modulated mRNA turnover by inhibiting the mTOR pathway, improved nucleotide pool imbalance in exosc2 zebrafish, resulting in prolonged survival and partial rescue of neuronal defects. Taken together, our findings offer new insights into the disease pathogenesis caused by Exosc2 deficiency, and might help explain fundamental molecular mechanisms in neuronal diseases, such as Alzheimer's disease, amyotrophic lateral sclerosis, and spinal muscular atrophy.
Exosc2 是参与 RNA 3' 端加工和各种 RNA 降解的外泌体复合物的一个组成部分。最近,在德国的一些家族中报道了 EXOSC2 突变,这些家族表现为身材矮小、听力损失、视网膜色素变性和早衰。然而,EXOSC2 的体内功能仍不清楚。在此,我们生成了 Exosc2 敲除(exosc2)斑马鱼,这些斑马鱼在受精后 13 天表现出幼虫致死性,伴有小头畸形、脊髓运动神经元丧失、少突胶质细胞缺失和视网膜色素变性。从机制上讲,Exosc2 缺乏导致 mRNA 周转受损,导致核苷酸池失衡。雷帕霉素通过抑制 mTOR 通路来调节 mRNA 周转,改善了 exosc2 斑马鱼中的核苷酸池失衡,从而延长了生存时间,并部分挽救了神经元缺陷。总之,我们的研究结果为 Exosc2 缺乏引起的疾病发病机制提供了新的见解,并可能有助于解释阿尔茨海默病、肌萎缩侧索硬化症和脊髓性肌萎缩症等神经疾病的基本分子机制。