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解析 DMD 基因中复杂重复-三重复排序列的结构和机制。

Dissecting the structure and mechanism of a complex duplication-triplication rearrangement in the DMD gene.

机构信息

Université Montpellier 1, UFR médecine, Montpellier F-34000, France.

出版信息

Hum Mutat. 2013 Aug;34(8):1080-4. doi: 10.1002/humu.22353. Epub 2013 Jun 3.

Abstract

Pathogenic complex genomic rearrangements are being increasingly characterized at the nucleotide level, providing unprecedented opportunities to evaluate the complexities of mutational mechanisms. Here, we report the molecular characterization of a complex duplication-triplication rearrangement involving exons 45-60 of the DMD gene. Inverted repeats facilitated this complex rearrangement, which shares common genomic organization with the recently described duplication-inverted triplication-duplication (DUP-TRP/INV-DUP) events; specifically, a 690-kb region comprising DMD exons from 45 to 60 was duplicated in tandem, and another 46-kb segment containing exon 51 was inserted inversely in between them. Taking into consideration (1) the presence of a predicted PRDM9 binding site in the near vicinity of the junction involving two inverted L1 elements and (2) the inherent properties of X-Y chromosome recombination during male meiosis, we proposed an alternative two-step model for the generation of this X-linked DMD DUP-TRP/INV-DUP event.

摘要

致病的复杂基因组重排正在以核苷酸水平为特征进行越来越多的描述,为评估突变机制的复杂性提供了前所未有的机会。在这里,我们报告了一个涉及 DMD 基因外显子 45-60 的复杂重复-三重复排列的分子特征。倒位重复促进了这种复杂的重排,它与最近描述的重复-倒位三重复-重复(DUP-TRP/INV-DUP)事件具有共同的基因组组织;具体来说,一个包含 45 到 60 个外显子的 690-kb 区域被串联复制,另一个包含外显子 51 的 46-kb 片段被反向插入它们之间。考虑到 (1) 在涉及两个倒置 L1 元件的连接点附近存在预测的 PRDM9 结合位点,以及 (2) 男性减数分裂过程中 X-Y 染色体重组的固有特性,我们提出了一个替代的两步模型来产生这个 X 连锁的 DMD DUP-TRP/INV-DUP 事件。

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