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双功能、配对样DNA结合结构域和转座增强子在睡美人转座中的作用。

Involvement of a bifunctional, paired-like DNA-binding domain and a transpositional enhancer in Sleeping Beauty transposition.

作者信息

Izsvák Zsuzsanna, Khare Dheeraj, Behlke Joachim, Heinemann Udo, Plasterk Ronald H, Ivics Zoltán

机构信息

Max Delbrück Center for Molecular Medicine, Robert Rössle Strasse 10, D-13092 Berlin, Germany.

出版信息

J Biol Chem. 2002 Sep 13;277(37):34581-8. doi: 10.1074/jbc.M204001200. Epub 2002 Jun 24.

Abstract

Sleeping Beauty (SB) is the most active Tc1/mariner-like transposon in vertebrate species. Each of the terminal inverted repeats (IRs) of SB contains two transposase-binding sites (DRs). This feature, termed the IR/DR structure, is conserved in a group of Tc1-like transposons. The DNA-binding region of SB transposase, similar to the paired domain of Pax proteins, consists of two helix-turn-helix subdomains (PAI + RED = PAIRED). The N-terminal PAI subdomain was found to play a dominant role in contacting the DRs. Transposase was able to bind to mutant sites retaining the 3' part of the DRs; thus, primary DNA binding is not sufficient to determine the specificity of the transposition reaction. The PAI subdomain was also found to bind to a transpositional enhancer-like sequence within the left IR of SB, and to mediate protein-protein interactions between transposase subunits. A tetrameric form of the transposase was detected in solution, consistent with an interaction between the IR/DR structure and a transposase tetramer. We propose a model in which the transpositional enhancer and the PAI subdomain stabilize complexes formed by a transposase tetramer bound at the IR/DR. These interactions may result in enhanced stability of synaptic complexes, which might explain the efficient transposition of Sleeping Beauty in vertebrate cells.

摘要

睡美人(SB)是脊椎动物物种中最活跃的Tc1/水手样转座子。SB的每个末端反向重复序列(IR)都包含两个转座酶结合位点(DR)。这一特征,即IR/DR结构,在一组Tc1样转座子中是保守的。SB转座酶的DNA结合区域与Pax蛋白的配对结构域相似,由两个螺旋-转角-螺旋亚结构域组成(PAI + RED = 配对)。发现N端PAI亚结构域在与DR的接触中起主导作用。转座酶能够与保留DR 3'部分的突变位点结合;因此,初级DNA结合不足以确定转座反应的特异性。还发现PAI亚结构域与SB左IR内的一个转座增强子样序列结合,并介导转座酶亚基之间的蛋白质-蛋白质相互作用。在溶液中检测到转座酶的四聚体形式,这与IR/DR结构和转座酶四聚体之间的相互作用一致。我们提出了一个模型,其中转座增强子和PAI亚结构域稳定由结合在IR/DR处的转座酶四聚体形成的复合物。这些相互作用可能导致突触复合物稳定性增强,这可能解释了睡美人在脊椎动物细胞中的高效转座。

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