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哺乳动物线粒体中核苷三磷酸池的不对称性。

Nucleoside triphosphate pool asymmetry in mammalian mitochondria.

机构信息

Department of Biochemistry and Biophysics, Oregon State University, Corvallis, Oregon 97331-7305, USA.

出版信息

J Biol Chem. 2011 May 13;286(19):16992-6. doi: 10.1074/jbc.M111.236968. Epub 2011 Mar 24.

Abstract

Our laboratory has reported that deoxyribonucleoside triphosphate (dNTP) pools in rat tissue mitochondria are highly asymmetric, with dGTP predominating, and that the imbalance probably contributes toward the high spontaneous mutation rate of the mitochondrial genome. Ferraro et al. (Ferraro, P., Nicolosi, L., Bernardi, P., Reichard, P., and Bianchi, V. (2006) Proc. Natl. Acad. Sci. U.S.A. 103, 18586-18591) have challenged these findings, based upon their studies of mouse liver mitochondria. Moreover, they have identified a potential artifact in the DNA polymerase-based assay for dNTPs, based upon overestimation of dGTP when GTP levels in extracts are much higher than dGTP levels. We measured ribonucleoside triphosphate (rNTP) pools in rat mitochondrial extracts and found that GTP pools exceed dGTP pools by 50-fold or less, not enough to interfere with the dGTP assay. Analysis of dNTP pools in state 3 mitochondria, after incubation with ADP and oxidizable substrates, gave similar results. We confirmed our earlier finding that rat mitochondrial dNTP pools are highly asymmetric. dNTP pools in cytosolic extracts are uniformly low, suggesting that the dNTP pool asymmetry arises within the mitochondrion. Moreover, we found rat tissue rNTP pools to be even more highly asymmetric, with ATP, for example, at least 2 orders of magnitude more abundant than CTP in liver extracts. This finding raises the possibility that transcription of the mitochondrial genome is more error-prone than transcription in the nucleus.

摘要

我们的实验室曾报道,大鼠组织线粒体中的脱氧核苷三磷酸(dNTP)池具有高度的不对称性,以 dGTP 为主,这种不平衡可能导致线粒体基因组的高自发突变率。Ferraro 等人(Ferraro, P., Nicolosi, L., Bernardi, P., Reichard, P., and Bianchi, V. (2006) Proc. Natl. Acad. Sci. U.S.A. 103, 18586-18591)对这些发现提出了质疑,他们的研究对象是小鼠肝线粒体。此外,他们还发现了一种基于 DNA 聚合酶的 dNTP 检测方法中的潜在假象,即当提取物中的 GTP 水平远高于 dGTP 水平时,会高估 dGTP。我们测量了大鼠线粒体提取物中的核糖核苷三磷酸(rNTP)池,发现 GTP 池比 dGTP 池高出 50 倍或更少,不足以干扰 dGTP 测定。在用 ADP 和可氧化底物孵育后分析状态 3 线粒体中的 dNTP 池,得到了类似的结果。我们证实了之前的发现,即大鼠线粒体 dNTP 池具有高度的不对称性。胞质提取物中的 dNTP 池均匀较低,表明 dNTP 池的不对称性发生在线粒体内部。此外,我们发现大鼠组织 rNTP 池更加不对称,例如,在肝提取物中,ATP 的丰度至少比 CTP 高出 2 个数量级。这一发现提出了一种可能性,即线粒体基因组的转录比核内转录更容易出错。

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