Malyarchuk Boris A, Rogozin Igor B, Berikov Vladimir B, Derenko Miroslava V
Institute of Biological Problems of the North, Far-East Branch of the Russian Academy of Sciences, Portovaya str. 18, Magadan 685000, Russia.
Hum Genet. 2002 Jul;111(1):46-53. doi: 10.1007/s00439-002-0740-4. Epub 2002 Jun 7.
Analysis of mutations in mitochondrial DNA is an important issue in population and evolutionary genetics. To study spontaneous base substitutions in human mitochondrial DNA we reconstructed the mutational spectra of the hypervariable segments I and II (HVS I and II) using published data on polymorphisms from various human populations. An excess of pyrimidine transitions was found both in HVS I and II regions. By means of classification analysis numerous mutational hotspots were revealed in these spectra. Context analysis of hotspots revealed a complex influence of neighboring bases on mutagenesis in the HVS I region. Further statistical analysis suggested that a transient misalignment dislocation mutagenesis operating in monotonous runs of nucleotides play an important role for generating base substitutions in mitochondrial DNA and define context properties of mtDNA. Our results suggest that dislocation mutagenesis in HVS I and II is a fingerprint of errors produced by DNA polymerase gamma in the course of human mitochondrial DNA replication
线粒体DNA突变分析是群体遗传学和进化遗传学中的一个重要问题。为了研究人类线粒体DNA中的自发碱基替换,我们利用已发表的不同人类群体多态性数据重建了高变区I和II(HVS I和II)的突变谱。在HVS I和II区域均发现嘧啶转换过量。通过分类分析,在这些谱中揭示了许多突变热点。对热点的上下文分析揭示了HVS I区域中相邻碱基对诱变的复杂影响。进一步的统计分析表明,在核苷酸单调排列中起作用的瞬时错配错位诱变对于线粒体DNA中碱基替换的产生起着重要作用,并定义了线粒体DNA的上下文特性。我们的结果表明,HVS I和II中的错位诱变是DNA聚合酶γ在人类线粒体DNA复制过程中产生错误的一个特征。