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真核生物DNA转座子的自动调节

The autoregulation of a eukaryotic DNA transposon.

作者信息

Claeys Bouuaert Corentin, Lipkow Karen, Andrews Steven S, Liu Danxu, Chalmers Ronald

机构信息

School of Biomedical Sciences , University of Nottingham , Nottingham , United Kingdom.

出版信息

Elife. 2013 Jun 18;2:e00668. doi: 10.7554/eLife.00668.

Abstract

How do DNA transposons live in harmony with their hosts? Bacteria provide the only documented mechanisms for autoregulation, but these are incompatible with eukaryotic cell biology. Here we show that autoregulation of Hsmar1 operates during assembly of the transpososome and arises from the multimeric state of the transposase, mediated by a competition for binding sites. We explore the dynamics of a genomic invasion using a computer model, supported by in vitro and in vivo experiments, and show that amplification accelerates at first but then achieves a constant rate. The rate is proportional to the genome size and inversely proportional to transposase expression and its affinity for the transposon ends. Mariner transposons may therefore resist post-transcriptional silencing. Because regulation is an emergent property of the reaction it is resistant to selfish exploitation. The behavior of distantly related eukaryotic transposons is consistent with the same mechanism, which may therefore be widely applicable. DOI:http://dx.doi.org/10.7554/eLife.00668.001.

摘要

DNA转座子如何与它们的宿主和谐共生?细菌提供了唯一已记录的自我调控机制,但这些机制与真核细胞生物学不兼容。在这里,我们表明Hsmar1的自我调控在转座体组装过程中起作用,并且源于转座酶的多聚体状态,这是由对结合位点的竞争介导的。我们使用计算机模型探索基因组入侵的动态过程,并得到体外和体内实验的支持,结果表明扩增起初会加速,但随后达到恒定速率。该速率与基因组大小成正比,与转座酶表达及其对转座子末端的亲和力成反比。因此,水手座转座子可能抵抗转录后沉默。由于调控是反应的一种涌现特性,它能抵抗自私性利用。远缘真核转座子的行为与相同机制一致,因此该机制可能具有广泛的适用性。DOI:http://dx.doi.org/10.7554/eLife.00668.001

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb6d/3687335/19e9f48a5293/elife00668f001.jpg

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