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首页> 外文期刊>Human Molecular Genetics >Allelic recombination and de novo deletions in sperm in the human beta-globin gene region.
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Allelic recombination and de novo deletions in sperm in the human beta-globin gene region.

机译:人β-珠蛋白基因区域精子中的等位基因重组和从头缺失。

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摘要

Meiotic recombination is of fundamental importance in creating haplotype diversity in the human genome and has the potential to cause genomic rearrangements by ectopic recombination between repeat sequences and through other changes triggered by recombination-initiating events. However, the relationship between allelic recombination and genome instability in the human germline remains unclear. We have therefore analysed recombination and DNA instability in the delta-, beta-globin gene region and its associated recombination hotspot. Sperm typing has for the first time accurately defined the hotspot and shown it to be the most active autosomal crossover hotspot yet described, although unusually inactive in non-exchange gene conversion. The hotspot just extends into a homology block shared by the delta- and beta-globin genes, within which ectopic exchanges can generate Hb Lepore deletions. We developed a physical selection method for recovering and validating extremely rare de novo deletions in human DNA and used it to characterize the dynamics of these Hb Lepore deletions in sperm as well as other deletions not arising from ectopic exchanges between homologous DNA sequences. Surprisingly, both classes of deletion showed breakpoints that avoided the beta-globin hotspot, establishing that it possesses remarkable fidelity and does not play a significant role in triggering these DNA rearrangements. This study also provides the first direct analysis of de novo deletion in the human germline and points to a possible deletion-controlling element in the beta-globin gene separate from the crossover hotspot.
机译:减数分裂重组对于在人类基因组中产生单倍型多样性至关重要,并且可能通过重复序列之间的异位重组以及重组起始事件引发的其他变化而引起基因组重排。然而,等位基因重组与人类种系中基因组不稳定之间的关系仍不清楚。因此,我们已经分析了δ-,β-珠蛋白基因区域及其相关的重组热点中的重组和DNA不稳定。精子分型首次准确地定义了热点,并显示出它是迄今为止描述的最活跃的常染色体交叉热点,尽管在非交换基因转换中异常活跃。热点只是延伸到一个由δ-和β-珠蛋白基因共享的同源性区块中,异位交换可在其中产生Hb Lepore缺失。我们开发了一种物理选择方法,用于恢复和验证人类DNA中极为罕见的从头缺失,并将其用于表征精子中这些Hb Lepore缺失以及其他并非源于同源DNA序列之间异位交换的缺失的动力学。出乎意料的是,这两类缺失均显示出避免了β-珠蛋白热点的断点,从而确定了它具有显着的保真度,并且在触发这些DNA重排中不发挥重要作用。这项研究还提供了人类种系中从头缺失的首次直接分析,并指出了与交叉热点分离的β-珠蛋白基因中可能存在的缺失控制元件。

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