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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >The mitochondrial genome sequence of Mus terricolor: comparison with Mus musculus domesticus and implications for xenomitochondrial mouse modeling.
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The mitochondrial genome sequence of Mus terricolor: comparison with Mus musculus domesticus and implications for xenomitochondrial mouse modeling.

机译:陆地线虫的线粒体基因组序列:与家蝇的比较及对线粒体小鼠建模的影响。

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摘要

Knowledge of the mitochondrial DNA (mtDNA) sequence of divergent murine species is critical from both a phylogenetic perspective and in understanding nuclear-mitochondrial interactions, particularly as the latter influences our xenocybrid models of mitochondrial disease. To this end, the sequence of the mitochondrial genome of the murine species Mus terricolor (formerly Mus dunni) is reported and compared with the published sequence for the common laboratory mouse Mus musculus domesticus strain C57BL/6J. These species are of interest because xenomitochondrial cybrid mice were created that harbor M. terricolor mtDNA in a M. m. domesticus nuclear background. Although the total of 1763 nucleotide substitutions represents striking heterogeneity, the majority of these are silent, leading to highly conserved protein sequences with only 159 amino acid differences. Moreover, 58% of these amino acid differences represented conservative substitutions. All of the tRNA genes and rRNA genes have homology of 91% or greater. The control region shows the greatest heterogeneity, as expected, with 85% homology overall. Regions of 100% homology were found for Conserved Sequence Block I, Conserved Sequence Block III and the L-strand origin of replication. Complex I genes showed the greatest degree of difference among protein-coding genes with amino acid homology of 91-97% among the seven mitochondrial genes. Complexes III and IV genes show high homology ranging from 98-100%. From these data, complex I differences appear most critical for the viability of M. m. domesticus: M. terricolor cybrids. Moreover, the sequence information reported here should be useful in identifying critical regions for mitochondrial transfer between species, for furthering the understanding of mitochondrial dynamics and pathology in transmitochondrial organisms, and for the study of Mus genus origins.
机译:从系统发育的角度和理解核线粒体的相互作用,尤其是因为后者影响我们的线粒体疾病的异种杂交模型时,了解不同小鼠物种的线粒体DNA(mtDNA)序列至关重要。为此,报道了鼠种Mus terricolor(以前称为Mus dunni)的线粒体基因组序列,并将其与普通实验室小鼠家蝇Mus musculus domesticus菌株C57BL / 6J的已公布序列进行了比较。这些物种之所以令人感兴趣,是因为创建了在线粒体中携带陆地色线粒体mtDNA的线粒体杂种小鼠。 domesticus核背景。尽管共有1763个核苷酸取代代表了惊人的异质性,但其中大多数是沉默的,从而导致高度保守的蛋白质序列仅有159个氨基酸差异。此外,这些氨基酸差异中的58%代表保守取代。所有的tRNA基因和rRNA基因具有91%或更高的同源性。如预期的那样,对照区域显示出最大的异质性,总体同源性为85%。发现保守序列嵌段I,保守序列嵌段III和L链复制起点的100%同源性区域。复杂的I基因在7个线粒体基因中的氨基酸同源性为91-97%的蛋白质编码基因之间显示出最大程度的差异。复合物III和IV基因显示出98-100%的高度同源性。从这些数据来看,复杂的I差异似乎对M. m。的生存能力至关重要。 domesticus:M。terricolor cybrids。此外,此处报道的序列信息应有助于确定物种之间线粒体转移的关键区域,以进一步了解线粒体生物体中的线粒体动力学和病理学,以及用于研究Mus属的起源。

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