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转座元件通过DNA环化的潜在移动。

Potential movement of transposable elements through DNA circularization.

作者信息

Mourier Tobias

机构信息

Centre for GeoGenetics, Natural History Museum of Denmark, University of Copenhagen, Oester Voldgade 5-7, 1350, Copenhagen K, Denmark.

出版信息

Curr Genet. 2016 Nov;62(4):697-700. doi: 10.1007/s00294-016-0592-4. Epub 2016 Mar 15.

Abstract

The generation of circular DNAs is a relatively unrecognized type of genomic structural variation, but recent findings point to a possible role of circular DNAs in the movement of transposable elements. Circularization of genomic DNA is observed across eukaryotic species, in a range of different cell types, and from all parts of the genome. A recent study on circular DNAs in yeast found that transposable element sequence residing in circular structures mostly corresponded to full-length transposable elements. Transposable elements are mobile genetic elements scattered across eukaryotic genomes. Different classes of transposable elements move either through a copy-and-paste or a cut-and-paste. As circular DNA structures may recombine with the genome and re-integrate into a novel genomic locus, transposable elements could move through circularization. In yeast, the predominant type of transposable element is a so-called LTR (long terminal repeats) retrotransposable element that moves through a copy-and-paste mechanism. The observed circularization of this element means it potentially could move through a cut-and-paste mechanism as well. Although further experimental evidence is needed to establish the extent to which movement of transposable elements through DNA circularization takes place, such movement is likely to have a functional impact on the genomic context.

摘要

环状DNA的产生是一种相对未被充分认识的基因组结构变异类型,但最近的研究结果表明环状DNA在转座元件移动中可能发挥作用。在各种真核生物物种、不同类型的细胞以及基因组的各个部分中都观察到了基因组DNA的环化现象。最近一项关于酵母中环状DNA的研究发现,存在于环状结构中的转座元件序列大多对应全长转座元件。转座元件是散布在真核生物基因组中的可移动遗传元件。不同类别的转座元件通过复制粘贴或剪切粘贴的方式移动。由于环状DNA结构可能与基因组重组并重新整合到一个新的基因组位点,转座元件可能通过环化移动。在酵母中,主要的转座元件类型是所谓的LTR(长末端重复序列)逆转座元件,它通过复制粘贴机制移动。观察到这种元件的环化意味着它也可能通过剪切粘贴机制移动。尽管需要进一步的实验证据来确定转座元件通过DNA环化发生移动的程度,但这种移动可能会对基因组环境产生功能影响。

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