Ohsato Takashi, Ishihara Naotada, Muta Tsuyoshi, Umeda Shuyo, Ikeda Shogo, Mihara Katsuyoshi, Hamasaki Naotaka, Kang Dongchon
Department of Clinical Chemistry and Laboratory Medicine, Kyushu University Graduate School of Medical Sciences, Fukuoka, Japan.
Eur J Biochem. 2002 Dec;269(23):5765-70. doi: 10.1046/j.1432-1033.2002.03238.x.
Mammalian mitochondria contain strong nuclease activity. Endonuclease G (endoG), which predominantly resides in mitochondria, accounts for a large part of this nuclease activity. It has been proposed to act as an RNase H-like nuclease on RNA.DNA hybrids (R-loops) in the D-loop region where the origins of mitochondrial replication are mapped, providing RNA primers for mtDNA replication. However, in contrast with this proposed activity, endoG has recently been shown to translocate to nuclei on apoptotic stimulation and act as a nuclease without sequence specificity. To clarify the role of endoG in mtDNA replication, we examined its submitochondrial localization and its ability to cleave R-loops. At low concentration, it preferentially produces double-stranded breaks in R-loops, but does not act as an RNase H-like nuclease. In addition, it exists in the mitochondrial intermembrane space, but not in the matrix where mtDNA replication occurs. These results do not support the involvement of endoG in mtDNA replication. Based on the fact that guanine tracts, which are preferential targets of endoG, tend to form triplex structures and that endoG produces double-stranded breaks in R-loops, we propose that three-stranded DNA may be the preferred substrate of endoG.
哺乳动物线粒体含有很强的核酸酶活性。主要存在于线粒体中的核酸内切酶G(endoG)占了这种核酸酶活性的很大一部分。有人提出它在D环区域(线粒体复制起始点所在区域)的RNA·DNA杂交体(R环)上作为一种类似核糖核酸酶H的核酸酶起作用,为线粒体DNA复制提供RNA引物。然而,与这种推测的活性相反,最近研究表明,凋亡刺激时endoG会转移到细胞核并作为一种无序列特异性的核酸酶起作用。为了阐明endoG在线粒体DNA复制中的作用,我们检测了它在线粒体内的定位及其切割R环的能力。在低浓度时,它优先在R环中产生双链断裂,但不作为类似核糖核酸酶H的核酸酶起作用。此外,它存在于线粒体外膜间隙,而不存在于发生线粒体DNA复制的线粒体基质中。这些结果不支持endoG参与线粒体DNA复制。基于endoG的优先作用靶点鸟嘌呤序列倾向于形成三链结构以及endoG在R环中产生双链断裂这一事实,我们提出三链DNA可能是endoG的首选底物。