Jourdain Alexis A, Koppen Mirko, Rodley Christopher D, Maundrell Kinsey, Gueguen Naïg, Reynier Pascal, Guaras Adela M, Enriquez José A, Anderson Paul, Simarro Maria, Martinou Jean-Claude
Department of Cell Biology, University of Geneva, 30 quai Ernest-Ansermet, 1211 Genève 4, Switzerland.
UMR CNRS 6214 - INSERM 1083, Département de Biochimie et Génétique, CHU d'Angers, 4 rue Larrey, 49933 Angers Cedex, France.
Cell Rep. 2015 Feb 24;10(7):1110-21. doi: 10.1016/j.celrep.2015.01.063. Epub 2015 Feb 19.
The mitochondrial genome relies heavily on post-transcriptional events for its proper expression, and misregulation of this process can cause mitochondrial genetic diseases in humans. Here, we report that a novel translational variant of Fas-activated serine/threonine kinase (FASTK) co-localizes with mitochondrial RNA granules and is required for the biogenesis of ND6 mRNA, a mitochondrial-encoded subunit of the NADH dehydrogenase complex (complex I). We show that ablating FASTK expression in cultured cells and mice results specifically in loss of ND6 mRNA and reduced complex I activity in vivo. FASTK binds at multiple sites along the ND6 mRNA and its precursors and cooperates with the mitochondrial degradosome to ensure regulated ND6 mRNA biogenesis. These data provide insights into the mechanism and control of mitochondrial RNA processing within mitochondrial RNA granules.
线粒体基因组的正常表达在很大程度上依赖于转录后事件,该过程的调控异常可导致人类线粒体遗传疾病。在此,我们报告一种新型的Fas激活的丝氨酸/苏氨酸激酶(FASTK)翻译变体与线粒体RNA颗粒共定位,并且是ND6 mRNA生物合成所必需的,ND6 mRNA是NADH脱氢酶复合体(复合体I)的线粒体编码亚基。我们表明,在培养细胞和小鼠中消除FASTK表达会导致体内ND6 mRNA特异性缺失以及复合体I活性降低。FASTK沿着ND6 mRNA及其前体的多个位点结合,并与线粒体降解体协同作用,以确保ND6 mRNA生物合成受到调控。这些数据为线粒体RNA颗粒内线粒体RNA加工的机制和调控提供了见解。