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定位于线粒体的人心磷脂合酶hCLS1的鉴定与功能表征。

Identification and functional characterization of hCLS1, a human cardiolipin synthase localized in mitochondria.

作者信息

Chen Daohong, Zhang Xing-Yue, Shi Yuguang

机构信息

Endocrine Research, Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, IN 46285, USA.

出版信息

Biochem J. 2006 Sep 1;398(2):169-76. doi: 10.1042/BJ20060303.

Abstract

In eukaryotic cells, CLS (cardiolipin synthase) is involved in the final step of cardiolipin synthesis by catalysing the transfer of a phosphatidyl residue from CDP-DAG (diacylglycerol) to PG (phosphatidylglycerol). Despite an important role of cardiolipin in regulating mitochondrial function, a gene encoding the mammalian CLS has not been identified so far. We report in the present study the identification and characterization of a human cDNA encoding the first mammalian CLS [hCLS1 (human CLS1)]. The predicted hCLS1 peptide sequence shares significant homology with the yeast and plant CLS proteins. The recombinant hCLS1 enzyme expressed in COS-7 cells catalysed efficiently the synthesis of cardiolipin in vitro using CDP-DAG and PG as substrates. Furthermore, overexpression of hCLS1 cDNA in COS-7 cells resulted in a significant increase in cardiolipin synthesis in intact COS-7 cells without any significant effects on the activity of the endogenous phosphatidylglycerophosphate synthase of the transfected COS-7 cells. Immunohistochemical analysis demonstrated that the recombinant hCLS1 protein was localized to the mitochondria when transiently expressed in COS-7 cells, which was further corroborated by results from subcellular fractionation analyses of the recombinant hCLS1 protein. Northern-blot analysis showed that the hCLS1 gene was predominantly expressed in tissues that require high levels of mitochondrial activities for energy metabolism, with the highest expression in skeletal and cardiac muscles. High levels of hCLS1 expression were also detected in liver, pancreas, kidney and small intestine, implying a functional role of hCLS1 in these tissues.

摘要

在真核细胞中,心磷脂合酶(CLS)通过催化磷脂酰基从CDP - 二酰甘油(CDP - DAG)转移至磷脂酰甘油(PG)参与心磷脂合成的最后一步。尽管心磷脂在调节线粒体功能中具有重要作用,但迄今为止尚未鉴定出编码哺乳动物CLS的基因。我们在本研究中报告了首个编码哺乳动物CLS [hCLS1(人CLS1)]的人类cDNA的鉴定与表征。预测的hCLS1肽序列与酵母和植物CLS蛋白具有显著同源性。在COS - 7细胞中表达的重组hCLS1酶以CDP - DAG和PG为底物在体外高效催化心磷脂的合成。此外,在COS - 7细胞中过表达hCLS1 cDNA导致完整COS - 7细胞中心磷脂合成显著增加,而对转染的COS - 7细胞内源性磷脂酰甘油磷酸合酶的活性没有任何显著影响。免疫组织化学分析表明,重组hCLS1蛋白在COS - 7细胞中瞬时表达时定位于线粒体,重组hCLS1蛋白的亚细胞分级分离分析结果进一步证实了这一点。Northern印迹分析表明,hCLS1基因主要在能量代谢需要高水平线粒体活性的组织中表达,在骨骼肌和心肌中表达最高。在肝脏、胰腺、肾脏和小肠中也检测到高水平的hCLS1表达,这意味着hCLS1在这些组织中具有功能作用。

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