首页> 美国卫生研究院文献>Nucleic Acids Research >A Ca2+-induced mitochondrial permeability transition causes complete release of rat liver endonuclease G activity from its exclusive location within the mitochondrial intermembrane space. Identification of a novel endo-exonuclease activity residing within the mitochondrial matrix
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A Ca2+-induced mitochondrial permeability transition causes complete release of rat liver endonuclease G activity from its exclusive location within the mitochondrial intermembrane space. Identification of a novel endo-exonuclease activity residing within the mitochondrial matrix

机译:Ca2 +诱导的线粒体通透性转换导致大鼠肝脏内切核酸酶G活性从其在线粒体膜间空间的唯一位置完全释放。鉴定存在于线粒体基质中的新型内切核酸外切酶活性

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摘要

Endonuclease G, a protein historically thought to be involved in mitochondrial DNA (mtDNA) replication, repair, recombination and degradation, has recently been reported to be involved in nuclear DNA degradation during the apoptotic process. As a result, its involvement in mtDNA homeostasis has been called into question and has necessitated detailed analyses of its precise location within the mitochondrion. Data is presented localizing rat liver endonuclease G activity exclusively to the mitochondrial intermembrane space with no activity associated with either the interior face of the inner mitochondrial membrane or with the mitochondrial matrix. Additionally, it is shown that endonuclease G can be selectively released from the mitochondrion via induction of a Ca2+-induced mitochondrial permeability transition and that, upon its release, a further nuclease activity loosely associated with the interior face of the inner mitochondrial membrane and distinct in its properties from that of endonuclease G can be detected.
机译:核酸内切酶G是一种蛋白质,历史上一直被认为与线粒体DNA(mtDNA)复制,修复,重组和降解有关,最近据报道在凋亡过程中与核DNA降解有关。结果,其参与mtDNA稳态的研究受到质疑,并需要对其线粒体内的精确位置进行详细分析。呈现的数据仅将大鼠肝脏核酸内切酶G活性定位于线粒体膜间空间,而与线粒体内膜的内表面或线粒体基质均无相关。此外,显示核酸内切酶G可以通过诱导Ca 2 + 诱导的线粒体通透性转变而选择性地从线粒体中释放,并且释放后,进一步的核酸酶活性与内部松散相关。可以检测到内部线粒体膜的表面并且其性质与核酸内切酶G的性质不同。

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