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The role of the mitochondrial thioredoxin-2 system in cell function.

机译:线粒体硫氧还蛋白2系统在细胞功能中的作用。

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摘要

The hypothesis upon which this research is based is that the mitochondrial thioredoxin-2 system, which consists of mitochondrial thioredoxin-2 (Trx-2), mitochondrial thioredoxin reductase (TrxR-2) and mitochondrial thioredoxin peroxidase (Prdx-3), protects cells against apoptosis and regulates cell growth via mitochondrial redox homeostasis. Trx-2 mRNA was found expressed in a panel of cancer cell lines and Trx-2 protein is localized exclusively to the mitochondria. An alternate splice form of Trx-2 lacking exon 2 was identified that does not yield protein. Forced overexpression of Trx-2 in cell lines by using constitutive and inducible promoter systems increased mRNA levels, but did not yield an increase in Trx-2 protein. The role of Trx-2 in mammalian development was examined by generating a mouse deficient in Trx-2. Massive apoptosis, exencephaly and early embryonic lethality was seen in the Trx-2(−/−) homozygous embryos. Trx-2(−/−) embryonic fibroblasts were not viable under normal growth conditions, but could be rescued with maintenance in hypoxia. Trx-2(−/−) cells were also lacking mature cytochrome c, implicating Trx-2 in cytochrome c biogenesis. The Trx-2(+/−) heterozygous mice, which appear normal, had an increased sensitivity to some forms of oxidative toxicity (eg. acute doxorubicin) compared to the wild-type mice. To investigate the role of Prdx-3, WEHI7.2 cells with overexpression of Prdx-3 were generated by stable transfection. Overexpression of Prdx-3 inhibited cell proliferation, reduced cellular hydrogen peroxide levels and altered the mitochondrial membrane potential. Prdx-3 overexpression protected the cell from various drug-induced and hypoxia-induced apoptosis. Prdx-3 protein degradation was decreased during hypoxia, leading to a longer half-life under hypoxic conditions. Additionally, Prdx-3 protein levels were increased in a RCC4 cells expressing wild-type VHL compared to RCC4 cells with mutant VHL.
机译:该研究基于的假设是线粒体硫氧还蛋白2(Trx-2),线粒体硫氧还蛋白还原酶(TrxR-2)和线粒体硫氧还蛋白过氧化物酶(Prdx-3)组成的线粒体硫氧还蛋白2系统可保护细胞。通过线粒体氧化还原稳态调节细胞凋亡并调节细胞生长。发现Trx-2 mRNA在一组癌细胞系中表达,并且Trx-2蛋白仅定位于线粒体。缺少外显子2的Trx-2的另一种剪接形式被确定不产生蛋白质。通过使用组成型和诱导型启动子系统,在细胞系中强制过度表达Trx-2,可增加mRNA水平,但不会增加Trx-2蛋白。通过产生缺乏Trx-2的小鼠来检查Trx-2在哺乳动物发育中的作用。在 Trx-2 (-/-)纯合子胚胎中观察到大量的凋亡,自发性和早期胚胎致死率。 Trx-2 (-/-)胚胎成纤维细胞在正常生长条件下不可行,但可以在低氧条件下进行抢救。 Trx-2 (-/-)细胞也缺乏成熟的细胞色素 c ,暗示Trx-2参与细胞色素 c 的生物发生。与野生型小鼠相比,看上去正常的 Trx-2 (+/-)杂合小鼠对某些形式的氧化毒性(例如急性阿霉素)的敏感性增加。为了研究Prdx-3的作用,通过稳定转染产生了Prdx-3过表达的WEHI7.2细胞。 Prdx-3的过表达抑制细胞增殖,降低细胞过氧化氢水平并改变线粒体膜电位。 Prdx-3过表达保护细胞免受各种药物诱导和缺氧诱导的细胞凋亡。在缺氧条件下,Prdx-3蛋白降解减少,导致在低氧条件下更长的半衰期。另外,与具有突变型VHL的RCC4细胞相比,在表达野生型VHL的RCC4细胞中Prdx-3蛋白水平增加。

著录项

  • 作者

    Nonn, Larisa.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Health Sciences Toxicology.; Biology Cell.; Health Sciences Pharmacology.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 158 p.
  • 总页数 158
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 毒物学(毒理学);细胞生物学;药理学;
  • 关键词

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