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Functional Bias and Spatial Organization of Genes in Mutational Hot and Cold Regions in the Human Genome

机译:人类基因组突变热区和冷区中基因的功能偏向和空间组织

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摘要

The neutral mutation rate is known to vary widely along human chromosomes, leading to mutational hot and cold regions. We provide evidence that categories of functionally related genes reside preferentially in mutationally hot or cold regions, the size of which we have measured. Genes in hot regions are biased toward extracellular communication (surface receptors, cell adhesion, immune response, etc.), while those in cold regions are biased toward essential cellular processes (gene regulation, RNA processing, protein modification, etc.). From a selective perspective, this organization of genes could minimize the mutational load on genes that need to be conserved and allow fast evolution for genes that must frequently adapt. We also analyze the effect of gene duplication and chromosomal recombination, which contribute significantly to these biases for certain categories of hot genes. Overall, our results show that genes are located nonrandomly with respect to hot and cold regions, offering the possibility that selection acts at the level of gene location in the human genome.
机译:已知中性突变率沿人类染色体变化很大,导致突变的热区和冷区。我们提供的证据表明,功能相关基因的类别优先位于突变的热区或冷区,我们已经测量了它们的大小。高温区域的基因偏向细胞外通讯(表面受体,细胞粘附,免疫反应等),而寒冷区域的基因偏向基本细胞过程(基因调节,RNA加工,蛋白质修饰等)。从选择性的角度来看,这种基因组织可以最大程度地减少需要保守的基因的突变负荷,并允许必须频繁适应的基因快速进化。我们还分析了基因重复和染色体重组的作用,这些作用对某些类别的热基因有明显的偏倚。总的来说,我们的结果表明,基因相对于热区和冷区是非随机定位的,这提供了选择可能在人类基因组中的基因定位水平起作用的可能性。

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