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Mitochondrial CDP-diacylglycerol synthase activity is due to the peripheral protein TAMM41 and not due to the integral membrane protein CDP-diacylglycerol synthase 1

机译:线粒体CDP-甘油二酸合酶的活性是由于外周蛋白TAMM41而并非膜蛋白CDP-甘油二糖合酶1

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摘要

CDP diacylglycerol synthase (CDS) catalyses the conversion of phosphatidic acid (PA) to CDP-diacylglycerol, an essential intermediate in the synthesis of phosphatidylglycerol, cardiolipin and phosphatidylinositol (PI). CDS activity has been identified in mitochondria and endoplasmic reticulum of mammalian cells apparently encoded by two highly-related genes, CDS1 and CDS2. Cardiolipin is exclusively synthesised in mitochondria and recent studies in cardiomyocytes suggest that the peroxisome proliferator-activated receptor γ coactivator 1 (PGC-1α and β) serve as transcriptional regulators of mitochondrial biogenesis and up-regulate the transcription of the CDS1 gene. Here we have examined whether CDS1 is responsible for the mitochondrial CDS activity. We report that differentiation of H9c2 cells with retinoic acid towards cardiomyocytes is accompanied by increased expression of mitochondrial proteins, oxygen consumption, and expression of the PA/PI binding protein, PITPNC1, and CDS1 immunoreactivity. Both CDS1 immunoreactivity and CDS activity were found in mitochondria of H9c2 cells as well as in rat heart, liver and brain mitochondria. However, the CDS1 immunoreactivity was traced to a peripheral p55 cross-reactive mitochondrial protein and the mitochondrial CDS activity was due to a peripheral mitochondrial protein, TAMM41, not an integral membrane protein as expected for CDS1. TAMM41 is the mammalian equivalent of the recently identified yeast protein, Tam41. Knockdown of TAMM41 resulted in decreased mitochondrial CDS activity, decreased cardiolipin levels and a decrease in oxygen consumption. We conclude that the CDS activity present in mitochondria is mainly due to TAMM41, which is required for normal mitochondrial function.
机译:CDP二酰基甘油合酶(CDS)催化磷脂酸(PA)转化为CDP-二酰基甘油,这是合成磷脂酰甘油,心磷脂和磷脂酰肌醇(PI)的重要中间体。已经在哺乳动物细胞的线粒体和内质网中确定了CDS活性,这些细胞显然由两个高度相关的基因CDS1和CDS2编码。心磷脂仅在线粒体中合成,最近在心肌细胞中的研究表明,过氧化物酶体增殖物激活的受体γ共激活因子1(PGC-1α和β)充当线粒体生物发生的转录调节因子,并上调CDS1基因的转录。在这里,我们检查了CDS1是否负责线粒体CDS活性。我们报告说,视黄酸对心肌细胞的H9c2细胞分化伴随着线粒体蛋白表达的增加,耗氧量以及PA / PI结合蛋白,PITPNC1和CDS1免疫反应性的表达。在H9c2细胞的线粒体以及大鼠心脏,肝脏和脑线粒体中均发现CDS1免疫反应性和CDS活性。但是,CDS1免疫反应性可追溯到外周p55交叉反应性线粒体蛋白,而线粒体CDS活性归因于外周线粒体蛋白TAMM41,而不是CDS1预期的完整膜蛋白。 TAMM41与最近鉴定的酵母蛋白Tam41在哺乳动物中相当。击倒TAMM41导致线粒体CDS活性降低,心磷脂水平降低和耗氧量降低。我们得出结论,线粒体中存在的CDS活性主要归因于TAMM41,这是正常线粒体功能所必需的。

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