Nishinaka Taro, Doi Yuko, Hara Reiko, Yashima Eiji
Yashima Super-structured Helix Project, ERATO, Japan Science and Technology Agency, 101 Creation Core Nagoya, 2266-22 Anagahora, Shimoshidami, Nagoya 463-0003, Japan.
J Mol Biol. 2007 Jul 27;370(5):837-45. doi: 10.1016/j.jmb.2007.05.044. Epub 2007 May 18.
Escherichia coli RecA protein forms a right-handed helical filament with DNA molecules and has an ATP-dependent activity that exchanges homologous strands between single-stranded DNA (ssDNA) and duplex DNA. We show that the RecA-ssDNA filamentous complex is an elastic helical molecule whose length is controlled by the binding and release of nucleotide cofactors. RecA-ssDNA filaments were fluorescently labelled and attached to a glass surface inside a flow chamber. When the chamber solution was replaced by a buffer solution without nucleotide cofactors, the RecA-ssDNA filament rapidly contracted approximately 0.68-fold with partial filament dissociation. The contracted filament elongated up to 1.25-fold when a buffer solution containing ATPgammaS was injected, and elongated up to 1.17-fold when a buffer solution containing ATP or dATP was injected. This contraction-elongation behavior was able to be repeated by the successive injection of dATP and non-nucleotide buffers. We propose that this elastic motion couples to the elastic motion and/or the twisting rotation of DNA strands within the filament by adjusting their helical phases.
大肠杆菌RecA蛋白与DNA分子形成右手螺旋丝,并具有一种依赖ATP的活性,可在单链DNA(ssDNA)和双链DNA之间交换同源链。我们发现RecA-ssDNA丝状复合物是一种弹性螺旋分子,其长度由核苷酸辅因子的结合和释放控制。RecA-ssDNA丝被荧光标记并附着在流动腔内的玻璃表面。当腔室溶液被不含核苷酸辅因子的缓冲溶液取代时,RecA-ssDNA丝迅速收缩约0.68倍,同时部分丝解离。当注入含有ATPγS的缓冲溶液时,收缩的丝伸长至1.25倍,当注入含有ATP或dATP的缓冲溶液时,伸长至1.17倍。通过连续注入dATP和非核苷酸缓冲液,这种收缩-伸长行为能够重复。我们提出,这种弹性运动通过调节其螺旋相位与丝内DNA链的弹性运动和/或扭曲旋转相耦合。