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Epigenetic functions enriched in transcription factors binding to mouse recombination hotspots

机译:丰富的表观遗传功能与小鼠重组热点结合的转录因子

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摘要

The regulatory mechanism of recombination is a fundamental problem in genomics, with wide applications in genome-wide association studies, birth-defect diseases, molecular evolution, cancer research, etc. In mammalian genomes, recombination events cluster into short genomic regions called "recombination hotspots". Recently, a 13-mer motif enriched in hotspots is identified as a candidate cis-regulatory element of human recombination hotspots; moreover, a zinc finger protein, PRDM9, binds to this motif and is associated with variation of recombination phenotype in human and mouse genomes, thus is a trans-acting regulator of recombination hotspots. However, this pair of cis and trans-regulators covers only a fraction of hotspots, thus other regulators of recombination hotspots remain to be discovered. In this paper, we propose an approach to predicting additional trans-regulators from DNA-binding proteins by comparing their enrichment of binding sites in hotspots. Applying this approach on newly mapped mouse hotspots genome-wide, we confirmed that PRDM9 is a major trans-regulator of hotspots. In addition, a list of top candidate trans-regulators of mouse hotspots is reported. Using GO analysis we observed that the top genes are enriched with function of histone modification, highlighting the epigenetic regulatory mechanisms of recombination hotspots.
机译:重组的调控机制是基因组学中的一个基本问题,广泛应用于全基因组关联研究,先天缺陷疾病,分子进化,癌症研究等。在哺乳动物基因组中,重组事件聚集成称为“重组热点”的短基因组区域。 ”。近来,富含热点的13聚体基序被鉴定为人重组热点的候选顺式调控元件。此外,锌指蛋白PRDM9结合到该基序,并与人和小鼠基因组中重组表型的变化有关,因此是重组热点的反式调节因子。然而,这对顺式和反式调节子仅覆盖热点的一小部分,因此重组热点的其他调节子仍有待发现。在本文中,我们提出了一种通过比较DNA结合蛋白在热点中结合位点的富集来预测其他反式调节子的方法。将这种方法应用于全基因组的新映射的小鼠热点,我们确认PRDM9是热点的主要反式调节因子。此外,还报告了鼠标热点的顶级候选反式调节子。使用GO分析,我们观察到顶部基因富含组蛋白修饰功能,突出了重组热点的表观遗传调控机制。

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