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Human Genomic Deletions Mediated by Recombination between Alu Elements

机译:通过铝元素之间的重组介导的人类基因组缺失

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摘要

Recombination between Alu elements results in genomic deletions associated with many human genetic disorders. Here, we compare the reference human and chimpanzee genomes to determine the magnitude of this recombination process in the human lineage since the human-chimpanzee divergence ∼6 million years ago. Combining computational data mining and wet-bench experimental verification, we identified 492 human-specific deletions (for a total of ∼400 kb) attributable to this process, a significant component of the insertion/deletion spectrum of the human genome. The majority of the deletions (295 of 492) coincide with known or predicted genes (including 3 that deleted functional exons, as compared with orthologous chimpanzee genes), which implicates this process in creating a substantial portion of the genomic differences between humans and chimpanzees. Overall, we found that Alu recombination-mediated genomic deletion has had a much higher impact than was inferred from previously identified isolated events and that it continues to contribute to the dynamic nature of the human genome.
机译:Alu元素之间的重组导致与许多人类遗传疾病相关的基因组缺失。在这里,我们比较了人类和黑猩猩的参考基因组,以确定自600万年前人类与黑猩猩之间的分歧以来,这种重组过程在人类谱系中的大小。结合计算数据挖掘和湿台实验验证,我们确定了492个人类特异性缺失(总计约400 kb),此过程是人类基因组插入/缺失谱的重要组成部分。缺失的大部分(492个中的295个)与已知或预测的基因一致(与直系黑猩猩基因相比,包括3个删除了功能性外显子),这暗示了这一过程在人类和黑猩猩之间造成了很大一部分基因组差异。总的来说,我们发现Alu重组介导的基因组缺失的影响要比以前鉴定出的孤立事件所产生的影响要大得多,并且它继续为人类基因组的动态性质做出了贡献。

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