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RNA结合蛋白通过对COQ7的转录后调控来调节细胞呼吸和辅酶Q生物合成。

RNA-binding proteins regulate cell respiration and coenzyme Q biosynthesis by post-transcriptional regulation of COQ7.

作者信息

Cascajo María V, Abdelmohsen Kotb, Noh Ji Heon, Fernández-Ayala Daniel J M, Willers Imke M, Brea Gloria, López-Lluch Guillermo, Valenzuela-Villatoro Marina, Cuezva José M, Gorospe Myriam, Siendones Emilio, Navas Plácido

机构信息

a Centro Andaluz de Biología del Desarrollo, Universidad Pablo de Olavide-CSIC-JA, and Center for Biomedical Research on Rare Diseases (CIBERER), ISCIII , Sevilla , Spain.

b Laboratory of Genetics, National Institute on Aging-Intramural Research Program, NIH , Baltimore , Maryland , USA.

出版信息

RNA Biol. 2016 Jul 2;13(7):622-34. doi: 10.1080/15476286.2015.1119366. Epub 2015 Dec 21.

Abstract

Coenzyme Q (CoQ) is a key component of the mitochondrial respiratory chain carrying electrons from complexes I and II to complex III and it is an intrinsic component of the respirasome. CoQ concentration is highly regulated in cells in order to adapt the metabolism of the cell to challenges of nutrient availability and stress stimuli. At least 10 proteins have been shown to be required for CoQ biosynthesis in a multi-peptide complex and COQ7 is a central regulatory factor of this pathway. We found that the first 765 bp of the 3'-untranslated region (UTR) of COQ7 mRNA contains cis-acting elements of interaction with RNA-binding proteins (RBPs) HuR and hnRNP C1/C2. Binding of hnRNP C1/C2 to COQ7 mRNA was found to require the presence of HuR, and hnRNP C1/C2 silencing appeared to stabilize COQ7 mRNA modestly. By contrast, lowering HuR levels by silencing or depriving cells of serum destabilized and reduced the half-life of COQ7 mRNA, thereby reducing COQ7 protein and CoQ biosynthesis rate. Accordingly, HuR knockdown decreased oxygen consumption rate and mitochondrial production of ATP, and increased lactate levels. Taken together, our results indicate that a reduction in COQ7 mRNA levels by HuR depletion causes mitochondrial dysfunction and a switch toward an enhanced aerobic glycolysis, the characteristic phenotype exhibited by primary deficiency of CoQ10. Thus HuR contributes to efficient oxidative phosphorylation by regulating of CoQ10 biosynthesis.

摘要

辅酶Q(CoQ)是线粒体呼吸链的关键组成部分,负责将电子从复合物I和II传递至复合物III,并且是呼吸体的固有成分。细胞中CoQ的浓度受到高度调控,以便使细胞代谢适应营养可利用性和应激刺激的挑战。已证明在一种多肽复合物中CoQ生物合成至少需要10种蛋白质,而COQ7是该途径的核心调节因子。我们发现COQ7 mRNA的3'非翻译区(UTR)的前765个碱基对包含与RNA结合蛋白(RBP)HuR和hnRNP C1/C2相互作用的顺式作用元件。发现hnRNP C1/C2与COQ7 mRNA的结合需要HuR的存在,并且hnRNP C1/C2的沉默似乎适度稳定了COQ7 mRNA。相比之下,通过沉默或剥夺细胞血清来降低HuR水平会使COQ7 mRNA不稳定并缩短其半衰期,从而降低COQ7蛋白和CoQ生物合成速率。因此,HuR基因敲低降低了氧消耗率和线粒体ATP产生,并增加了乳酸水平。综上所述,我们的结果表明,通过耗尽HuR降低COQ7 mRNA水平会导致线粒体功能障碍并转向增强的有氧糖酵解,这是辅酶Q10原发性缺乏所表现出的特征性表型。因此,HuR通过调节辅酶Q10的生物合成有助于有效的氧化磷酸化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fbe/7609068/729cb4e1f700/KRNB_A_1119366_F0001_B.jpg

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