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Recombination-Associated Sequence Homogenization of Neighboring Alu Elements: Signature of Nonallelic Gene Conversion

机译:与重组相关的铝元素序列均质化:非等位基因转化的签名。

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摘要

Recently, researchers have begun to recognize that, in order to establish neutral models for disease association and evolutionary genomics studies, it is crucial to have a clear understanding of the genomic impact of nonallelic gene conversion. Drawing on previous successes in characterizing this phenomenon over protein-coding gene families, we undertook a computational analysis of neighboring Alu sequences in the genome scale. For this purpose, we developed adjusted comutation rate (aCMR), a novel statistical method measuring the excess number of identical point mutations shared by adjacent Alu sequences, vis-à-vis random pairs. Using aCMR, we uncovered a remarkable genome-wide sequence homogenization of neighboring Alus, with the strongest signal observed in the pseudoautosomal regions of the X and Y chromosomes. The magnitude of sequence homogenization between Alu pairs is greater with shorter interlocus distance, higher sequence identity, and parallel orientation. Moreover, shared substitutions show a strong directionality toward GC nucleotides, with multiple substitutions tending to cluster within the Alu sequence. Taken together, these observed recombination-associated sequence homogenization patterns are best explained by frequent ubiquitous gene conversion events between neighboring Alus. We believe that these observations help to illuminate the nature and impact of the enigmatic phenomenon of gene conversion.
机译:最近,研究人员开始认识到,为了建立用于疾病关联和进化基因组学研究的中性模型,对非等位基因转化的基因组影响有清晰的了解至关重要。利用先前在蛋白质编码基因家族中表征这种现象的成功经验,我们对基因组范围内的相邻Alu序列进行了计算分析。为此,我们开发了调整的折算率(aCMR),这是一种新颖的统计方法,用于测量相邻Alu序列相对于随机对共享的相同点突变的过量数量。使用aCMR,我们发现了相邻Alus的全基因组序列均一化,在X和Y染色体的拟常染色体区域观察到最强的信号。 Alu对之间序列均质化的幅度越大,其间距越短,序列同一性越高,平行方向越大。此外,共有的取代显示出对GC核苷酸的强方向性,多个取代趋于聚集在Alu序列内。综上所述,这些观察到的重组相关序列的均质化模式最好由邻近的Alus之间频繁发生的普遍基因转换事件来解释。我们相信,这些观察结果有助于阐明基因转换的神秘现象的性质和影响。

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