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Features and Trend of Loss of Promoter-Associated CpG Islands in the Human and Mouse Genomes

机译:人和小鼠基因组中与启动子相关的CpG岛的丢失特征和趋势

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摘要

CpG islands (CGIs) are often considered as gene markers, but the number of CGIs varies among mammalian genomes that have similar numbers of genes. In this study, we investigated the distribution of CGIs in the promoter regions of 3,197 human-mouse orthologous gene pairs and found that the mouse genome has notably fewer CGIs in the promoter regions and less pronounced CGI characteristics than does the human genome. We further inferred CGI's ancestral state using the dog genome as a reference and examined the nucleotide substitution pattern and the mutational direction in the conserved regions of human and mouse CGIs. The results reveal many losses of CGIs in both genomes but the loss rate in the mouse lineage is two to four times the rate in the human lineage. We found an intriguing feature of CGI loss, namely that the loss of a CGI usually starts from erosion at the both edges and gradually moves towards the center. We found functional bias in the genes that have lost promoter-associated CGIs in the human or mouse lineage. Finally, our analysis indicates that the association of CGIs with housekeeping genes is not as strong as previously estimated. Our study provides a detailed view of the evolution of promoter-associated CGIs in the human and mouse genomes and our findings are helpful for understanding the evolution of mammalian genomes and the role of CGIs in gene function.
机译:CpG岛(CGI)通常被认为是基因标记,但是CGI的数量在具有相似数量基因的哺乳动物基因组中有所不同。在这项研究中,我们调查了3197个人类小鼠直系同源基因对的启动子区域中CGI的分布,发现与人类基因组相比,小鼠基因组在启动子区域中的CGI明显更少,而且CGI特性也较不明显。我们进一步以狗基因组为参考推断出CGI的祖先状态,并检查了人和小鼠CGI保守区的核苷酸取代模式和突变方向。结果揭示了两个基因组中许多CGI的丢失,但小鼠谱系中的丢失率是人谱系中的2到4倍。我们发现了CGI丢失的一个有趣特征,即CGI的丢失通常从两个边缘的侵蚀开始,然后逐渐向中心移动。我们发现在人类或小鼠谱系中丢失了与启动子相关的CGI的基因中存在功能偏倚。最后,我们的分析表明,CGI与管家基因的关联并不像以前估计的那样牢固。我们的研究提供了人类和小鼠基因组中与启动子相关的CGI进化的详细视图,我们的发现有助于理解哺乳动物基因组的进化以及CGI在基因功能中的作用。

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  • 来源
    《Molecular Biology and Evolution》 |2007年第9期|1991-2000|共10页
  • 作者单位

    Department of Psychiatry and Center for the Study of Biological Complexity Virginia Commonwealth University Richmond Virginia USA;

    Key Laboratory of Cellular and Molecular Evolution Kunming Institute of Zoology Chinese Academy of Sciences Kunming China;

    Graduate School Chinese Academy of Sciences Beijing China;

    Department of Ecology and Evolution University of Chicago Chicago Illinois USA;

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