首页> 外文期刊>Journal of Bioenergetics and Biomembranes >Cardiolipin remodeling in a Chinese hamster lung fibroblast cell line deficient in oxidative energy production
【24h】

Cardiolipin remodeling in a Chinese hamster lung fibroblast cell line deficient in oxidative energy production

机译:Cardiolipin在中国仓鼠肺成纤维细胞中重塑细胞系缺乏氧化能量生产

获取原文
获取原文并翻译 | 示例
           

摘要

The metabolism of cardiolipin was investigated in a Chinese hamster lung fibroblast cell line CCL16-B2 deficient in oxidative energy metabolism and its parental cell line CCL16-B1. Mitochondrial enzyme activities involved in de novo cardiolipin biosynthesis were elevated in CCL16-B2 cells compared with CCL16-B1 cells, indicating initially an elevation in cardiolipin biosynthesis. Content of all phospholipids, including cardiolipin and its precursors, and high energy nucleotides were unaltered in CCL16-B2 cells compared to CCL16-B1 cells. When cells were incubated with [1,3-H-3]glycerol for up to 4 h radioactivity incorporated into cardiolipin in CCL16-B2 cells did not differ compared with CCL16-B1 cells. In contrast, radioactivity incorporated into phosphatidylglycerol, the immediate precursor of cardiolipin, was elevated over 2-fold in CCL16-B2 cells compared with CCL16-B1 cells. Analysis of the fatty acid molecular species in cardiolipin revealed alterations in the level of unsaturated but not saturated fatty acids in B2 compared with B1 cells, In vivo cardiolipin remodeling, that is, the deacylation of cardiolipin to monolysocardiolipin followed by reacylation back to cardiolipin, with [1-C-14]palmitate and [1-C-14]oleate and in vitro mitochondrial phospholipid remodeling with [1-C-14]linoleate were altered in CCL16-B2 cells compared to CCL16-B1 cells. Since both the appropriate content and molecular composition of cardiolipin is required for optimum mitochondrial oxidative phosphorylation, we suggest that the difference in CL molecular species composition observed in CCL16-B2 cells, mediated by alterations in in vivo cardiolipin remodeling, may be one of the underlying mechanisms for the reduction in oxidative energy production in CCL16-B2 cells.
机译:在氧化能量代谢及其亲本细胞系CCl16-B1中,研究了Cardiolipin的代谢在中国仓鼠肺成纤维细胞系CCL16-B2中。与CCl16-B1细胞相比,CCL16-B2细胞中涉及De Novo Cardiolipin生物合成的线粒体酶活性,表明初始患有Cardiolipin生物合成的升高。与CCL16-B1细胞相比,在CCl16-B2细胞中毫不含有心磷脂的含量,包括心脂素及其前体,以及高能量核苷酸。当将细胞与[1,3-H-3]温育时,甘油最多4小时,在CCl16-B2细胞中掺入Ccl16-B2细胞中的Closiolipin中的放射性没有不同的与CCl16-B1细胞不同。相反,与CCl16-B1细胞相比,在CCl16-B2细胞中升高了含有磷脂酰甘油的放射性,在Ccl16-B2细胞中升高了2倍。与B2细胞相比,Cardiolipin中脂肪酸分子物种的脂肪酸分子物种揭示了不饱和但不是饱和脂肪酸水平的改变,在体内Cardiolipin重塑中,即Cardiolipin对单甘氨酸的诱导,然后重新聚氨酯浸回心吡肽,用与CCL16-B1细胞相比,在CCl16-B2细胞中,在CCl16-B2细胞中改变了与[1-C-14] Limolate的棕榈酸酯和体外线粒体磷脂重塑。由于肺炎素的适当含量和分子组成是为了最佳的线粒体氧化磷酸化,因此表明,在CCL16-B2细胞中观察到的CCCl16-B2细胞中的Cl分子物种组成的差异,通过体内患有体内心脂素重塑的改变介导,可以是潜在的一个CCL16-B2细胞中氧化能量产生的机制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号