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Evidence for a large double-cruciform DNA structure on the X chromosome of human and chimpanzee.

机译:人类和黑猩猩X染色体上有一个大的双十字形DNA结构的证据。

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摘要

The human X chromosome consists of a high number of large inverted repeat (IR) DNA sequences which fulfill all requirements for formation of cruciform DNA structures. Such alternative DNA structures are suggested to have a great impact in altering the chromatin architecture and function. Our comprehensive analysis of the corresponding orthologous nucleotide sequences of an IR sequence from Homo sapiens and Pan troglodytes revealed that most of the nucleotide differences between the two species are symmetrical to the apex of the IR, and that the spacer region of the orthologous IRs are in reverse orientation. We provide evidence that this IR forms a large non-B DNA structure containing two Holliday junctions, allowing intrastrand nucleotide pairing of the arms and interstrand pairing of the spacer region of the IR. This structure would extrude into a large double-cruciform DNA structure providing the molecular basis of translocation events and regulation of gene expression.
机译:人类X染色体由大量大的反向重复(IR)DNA序列组成,这些序列满足形成十字形DNA结构的所有要求。有人建议这种替代性的DNA结构对改变染色质的结构和功能有很大的影响。我们对来自智人和盘尾虫的IR序列的相应直系同源核苷酸序列的综合分析表明,这两个物种之间的大多数核苷酸差异与IR的顶点对称,而直系同源IR的间隔区位于反向。我们提供的证据表明,该IR形成了一个大型的非B DNA结构,该结构包含两个霍利迪连接点,允许臂内的链内核苷酸配对和IR的间隔区间链间配对。该结构将被挤压成大的双十字形DNA结构,从而提供了易位事件和基因表达调控的分子基础。

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