Izsvák Zsuzsanna, Khare Dheeraj, Behlke Joachim, Heinemann Udo, Plasterk Ronald H, Ivics Zoltán
Max Delbrück Center for Molecular Medicine, Robert Rössle Strasse 10, D-13092 Berlin, Germany.
J Biol Chem. 2002 Sep 13;277(37):34581-8. doi: 10.1074/jbc.M204001200. Epub 2002 Jun 24.
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.
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。