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Clustering of Genes Coding for DNA Binding Proteins in a Regionof Atypical Evolution of the Human Genome

机译:人类基因组非典型进化区域中编码DNA结合蛋白的基因的聚类

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摘要

Comparison of the human and mouse genomes has revealed that significant variations in evolutionary rates exist among genomic regions and that a large part of this variation is interchromosomal. We confirm in this work, using a large collection of introns, that human chromosome 19 is the one that shows the highest divergence with respect to mouse. To search for other differences among chromosomes, we examine the distribution of gene functions in human and mouse chromosomes using the Gene Ontology definitions. We found by correspondence analysis that among the strongest clusterings of gene functions in human chromosomes is a group of genes coding for DNA binding proteins in chromosome 19. Interestingly, chromosome 19 also has a very high GC content, a feature that has been proposed to promote an opening of the chromatin, thereby facilitating binding of proteins to the DNA helix. In the mouse genome, however, a similar aggregation of genes coding for DNA binding proteins and high GC content cannot be found. This suggests that the distribution of genes coding for DNA binding proteins and the variations of the chromatin accessibility to these proteins are different in the human and mouse genomes. It is likely that the overall high synonymous and intron rates in chromosome 19 are a by-product of the high GC content of this chromosome.
机译:人类和小鼠基因组的比较表明,进化速度在基因组区域之间存在显着变化,并且这种变化的很大一部分是染色体间的。我们使用大量内含子在这项工作中证实,人类染色体19是相对于小鼠表现出最高差异的染色体。为了搜索染色体之间的其他差异,我们使用基因本体论定义检查了人类和小鼠染色体中基因功能的分布。通过对应分析我们发现,在人类染色体中最强的基因功能簇中,有一组编码19号染色体DNA结合蛋白的基因。有趣的是,19号染色体也具有很高的GC含量,这一特征被提出来促进染色质的开放,从而促进蛋白质与DNA螺旋的结合。但是,在小鼠基因组中,找不到编码DNA结合蛋白和高GC含量的基因的相似聚集。这表明在人类和小鼠基因组中,编码DNA结合蛋白的基因的分布以及染色质对这些蛋白的可及性的变化是不同的。染色体19总体上较高的同义词和内含子率很可能是该染色体的高GC含量的副产品。

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