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线粒体脱氧核糖核苷酸、库大小、合成及调控

Mitochondrial deoxyribonucleotides, pool sizes, synthesis, and regulation.

作者信息

Rampazzo Chiara, Ferraro Paola, Pontarin Giovanna, Fabris Sonia, Reichard Peter, Bianchi Vera

机构信息

Department of Biology, University of Padova, I-35131 Padova, Italy.

出版信息

J Biol Chem. 2004 Apr 23;279(17):17019-26. doi: 10.1074/jbc.M313957200. Epub 2004 Jan 26.

Abstract

We quantify cytosolic and mitochondrial deoxyribonucleoside triphosphates (dNTPs) from four established cell lines using a recently described method for the separation of cytosolic and mitochondrial (mt) dNTPs from as little as 10 million cells in culture (Pontarin, G., Gallinaro, L., Ferraro, P., Reichard, P., and Bianchi, V. (2003) Proc. Natl. Acad. Sci. U. S. A. 100, 12159-12164). In cycling cells the concentrations of the phosphates of thymidine, deoxycytidine, and deoxyadenosine (combining mono-, di-, and triphosphates in each case) did not differ significantly between mitochondria and cytosol, whereas deoxyguanosine phosphates were concentrated to mitochondria. We study the source and regulation of the mt dTTP pool as an example of mt dNTPs. We suggest two pathways as sources for mt dTTP: (i) import from the cytosol of thymidine diphosphate by a deoxynucleotide transporter, predominantly in cells involved in DNA replication with an active synthesis of deoxynucleotides and (ii) import of thymidine followed by phosphorylation by the mt thymidine kinase, predominantly in resting cells. Here we demonstrate that the second pathway is regulated by a mt 5'-deoxyribonucleotidase (mdN). We modify the in situ activity of mdN and measure the transfer of radioactivity from [(3)H]thymidine to mt thymidine phosphates. In cycling cells lacking the cytosolic thymidine kinase, a 30-fold overproduction of mdN decreases the specific radioactivity of mt dTTP to 25%, and an 80% decrease of mdN by RNA interference increases the specific radioactivity 2-fold. These results suggest that mdN modulates the synthesis of mt dTTP by counteracting in a substrate cycle the phosphorylation of thymidine by the mt thymidine kinase.

摘要

我们使用一种最近描述的方法,从四种已建立的细胞系中定量测定胞质和线粒体脱氧核糖核苷三磷酸(dNTPs),该方法可从培养的低至1000万个细胞中分离胞质和线粒体(mt)dNTPs(庞塔里恩,G.,加里纳罗,L.,费拉罗,P.,赖夏德,P.,和比安基,V.(2003年)美国国家科学院院刊100,12159 - 12164)。在增殖细胞中,胸腺嘧啶核苷、脱氧胞苷和脱氧腺苷的磷酸盐(每种情况下包括一磷酸、二磷酸和三磷酸)在线粒体和胞质中的浓度没有显著差异,而脱氧鸟苷磷酸盐则集中在线粒体中。我们以mt dTTP池为例研究mt dNTPs的来源和调控。我们提出两条途径作为mt dTTP的来源:(i)通过脱氧核苷酸转运体从胞质中导入二磷酸胸苷,主要发生在参与DNA复制且脱氧核苷酸有活跃合成的细胞中;(ii)导入胸苷,随后由mt胸苷激酶磷酸化,主要发生在静止细胞中。在此我们证明第二条途径受mt 5'-脱氧核糖核苷酸酶(mdN)调控。我们改变mdN的原位活性,并测量放射性从[³H]胸苷向mt胸苷磷酸盐的转移。在缺乏胞质胸苷激酶的增殖细胞中,mdN过量产生30倍会使mt dTTP的比放射性降至25%,而通过RNA干扰使mdN减少80%会使比放射性增加2倍。这些结果表明,mdN通过在底物循环中抵消mt胸苷激酶对胸苷的磷酸化作用来调节mt dTTP的合成。

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