Department of Biochemistry, Faculty of Science, The M.S. University of Baroda, Vadodara, 390002, Gujarat, India.
Engelhardt Institute of Molecular Biology, Russian Academy of Sciences, Vavilov Street 32, 119991 Moscow, Russia.
Biochim Biophys Acta Mol Cell Res. 2018 Sep;1865(9):1260-1276. doi: 10.1016/j.bbamcr.2018.06.008. Epub 2018 Jun 20.
The role of mitochondria is emerging in regulation of innate immunity, inflammation and cell death beyond its primary role in energy metabolism. Mitochondria act as molecular platform for immune adaptor protein complexes, which participate in innate immune signaling. The mitochondrial localized immune adaptors are widely expressed in non-immune cells, however their role in regulation of mitochondrial function and metabolic adaption is not well understood. NLRX1, a member of NOD family receptor proteins, localizes to mitochondria and is a negative regulator of anti-viral signaling. However, the submitochondrial localization of NLRX1 and its implication in regulation of mitochondrial functions remains elusive. Here, we confirm that NLRX1 translocates to mitochondrial matrix and associates with mitochondrial FASTKD5 (Fas-activated serine-threonine kinase family protein-5), a bonafide component of mitochondrial RNA granules (MRGs). The association of NLRX1 with FASTKD5 negatively regulates the processing of mitochondrial genome encoded transcripts for key components of complex-I and complex-IV, to modulate its activity and supercomplexes formation. The evidences, here, suggest an important role of NLRX1 in regulating the post-transcriptional processing of mitochondrial RNA, which may have an important implication in bioenergetic adaptation during metabolic stress, oncogenic transformation and innate immunity.
线粒体在调节先天免疫、炎症和细胞死亡方面的作用正在显现,超出了其在能量代谢中的主要作用。线粒体作为免疫衔接蛋白复合物的分子平台,参与先天免疫信号转导。线粒体定位的免疫衔接蛋白广泛表达于非免疫细胞中,但它们在调节线粒体功能和代谢适应方面的作用尚不清楚。NLRX1 是 NOD 家族受体蛋白的成员,定位于线粒体,是抗病毒信号的负调节剂。然而,NLRX1 的亚线粒体定位及其对线粒体功能调节的影响仍不清楚。在这里,我们证实 NLRX1 易位到线粒体基质,并与线粒体 FASTKD5(Fas 激活的丝氨酸-苏氨酸激酶家族蛋白-5)结合,后者是线粒体 RNA 颗粒(MRGs)的真正组成部分。NLRX1 与 FASTKD5 的结合负调节线粒体基因组编码的关键成分 I 和 IV 的转录物的加工,以调节其活性和超复合物的形成。这些证据表明 NLRX1 在调节线粒体 RNA 的转录后加工方面发挥着重要作用,这可能对代谢应激、致癌转化和先天免疫过程中的生物能量适应具有重要意义。