Martin Shelley S, Wachi Shinichiro, Baldwin Enoch P
Section of Molecular and Cellular Biology, University of California, Davis 95616, USA.
Biochem Biophys Res Commun. 2003 Aug 29;308(3):529-34. doi: 10.1016/s0006-291x(03)01437-2.
Cre recombinase exchanges DNA strands at the LoxP recognition site via transphosphorylation reactions that involve pentacoordinate transition states. We demonstrate that meta-vanadate ion (VO(3)(-)) and appropriate DNA substrates assemble a transition-state analog-like complex in the Cre active site. Meta-vanadate inhibits recombination of LoxP-derived oligonucleotide substrates that contain a gap at either or both scissile phosphates, but does not inhibit reactions with intact LoxP. The 3(')-hydroxyl group of the gapped substrate is required for inhibition, suggesting that vanadate is ligated by three oxo ligands. Assembly of the inhibited complex is slow (t(1/2)=19min at 4mM NaVO(3)) and requires Cre, substrates, and meta-vanadate. Holliday junction intermediates accumulated at lower meta-vanadate concentrations, suggesting that the second strand exchange is inhibited more readily than the first. The apparent K(D) for meta-vanadate is 1.5-2mM and binding shows positive cooperativity. This methodology may have general application for mechanistic studies of recombinase/topoisomerase-mediated strand exchange reactions.
Cre重组酶通过涉及五配位过渡态的转磷酸化反应在LoxP识别位点交换DNA链。我们证明偏钒酸根离子(VO₃⁻)和合适的DNA底物在Cre活性位点组装成类似过渡态类似物的复合物。偏钒酸抑制含有一个或两个可切割磷酸酯处有缺口的LoxP衍生寡核苷酸底物的重组,但不抑制与完整LoxP的反应。有缺口底物的3'-羟基对于抑制是必需的,这表明钒酸由三个氧代配体配位。抑制复合物的组装很慢(在4mM NaVO₃时t₁/₂ = 19分钟),并且需要Cre、底物和偏钒酸。在较低的偏钒酸浓度下积累了霍利迪连接中间体,这表明第二条链的交换比第一条链的交换更容易受到抑制。偏钒酸的表观解离常数K(D)为1.5 - 2mM,且结合表现出正协同性。这种方法可能在重组酶/拓扑异构酶介导的链交换反应的机制研究中有广泛应用。