首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Two mutations in mitochondrial ATP6 gene of ATP synthase, related to human cancer, affect ROS, calcium homeostasis and mitochondrial permeability transition in yeast
【24h】

Two mutations in mitochondrial ATP6 gene of ATP synthase, related to human cancer, affect ROS, calcium homeostasis and mitochondrial permeability transition in yeast

机译:ATP合酶的线粒体ATP6基因中的两个突变与人体癌有关,影响酵母中的ROS,钙稳态和线粒体渗透性过渡

获取原文
获取原文并翻译 | 示例
       

摘要

The relevance of mitochondrial DNA (mtDNA) mutations in cancer process is still unknown. Since the mutagenesis of mitochondrial genome in mammals is not possible yet, we have exploited budding yeast S. cerevisiae as a model to study the effects of tumor-associated mutations in the mitochondrial MTATP6 gene, encoding subunit 6 of ATP synthase, on the energy metabolism. We previously reported that four mutations in this gene have a limited impact on the production of cellular energy. Here we show that two mutations, Atp6-P163S and Atp6-K9OE (human MTATP6-P1365 and MTATP6-K64E, found in prostate and thyroid cancer samples, respectively), increase sensitivity of yeast cells both to compounds inducing oxidative stress and to high concentrations of calcium ions in the medium, when Om45p, the component of porin complex in outer mitochondrial membrane (OM), was fused to GFP. In OM45-GFP background, these mutations affect the activation of yeast permeability transition pore (yPTP, also called YMUC, yeast mitochondrial unspecific channel) upon calcium induction. Moreover, we show that calcium addition to isolated mitochondria heavily induced the formation of ATP synthase dimers and oligomers, recently proposed to form the core of PTP, which was slower in the mutants. We show the genetic evidence for involvement of mitochondrial ATP synthase in calcium homeostasis and permeability transition in yeast. This paper is a first to show, although in yeast model organism, that mitochondrial ATP synthase mutations, which accumulate during carcinogenesis process, may be significant for cancer cell escape from apoptosis.
机译:线粒体DNA(MTDNA)突变在癌症过程中的相关性仍然未知。由于哺乳动物中线粒体基因组的诱变是不可能的,我们已经利用萌芽的酵母S.酿酒酵母作为一种模型,以研究线粒体MTATP6基因,编码ATP合酶的亚基6的肿瘤相关突变对能量代谢的影响。我们以前报道,该基因的四个突变对细胞能量的产生有限。在这里,我们显示两个突变,ATP6-P163S和ATP6-K9OE(分别在前列腺和甲状腺癌样品中发现的人MTATP6-P1365和MTATP6-K64e)增加酵母细胞对诱导氧化应激和高浓度的化合物的敏感性在培养基中的钙离子,当OM45P,外部线粒体膜中的孔隙络合物的组分(OM)融合到GFP中。在OM45-GFP背景中,这些突变在钙诱导时影响酵母渗透过渡孔(YPTP,也称为YMUC,酵母线粒体未指定频道)的激活。此外,我们表明,钙添加到孤立的线粒体重量诱导ATP合酶二聚体和低聚物的形成,最近提出形成PTP的核心,突变体较慢。我们展示了酵母钙稳态和渗透性过渡中线粒体ATP合酶参与的遗传证据。本文是第一个显示的虽然在酵母模型生物中,但在致癌过程中积累的线粒体ATP合酶突变可能对癌细胞脱落可能是显着的。

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