Noël Ann-Josée, Wende Wolfgang, Pingoud Alfred
Institute for Biochemistry, Justus-Liebig University, D-35392 Giessen, Germany.
J Biol Chem. 2004 Feb 20;279(8):6794-804. doi: 10.1074/jbc.M311372200. Epub 2003 Nov 21.
PI-SceI, a homing endonuclease of the LAGLIDADG family, consists of two domains involved in DNA cleavage and protein splicing, respectively. Both domains cooperate in binding the recognition sequence. Comparison of the structures of PI-SceI in the absence and presence of substrate reveals major conformational changes in both the protein and DNA. Notably, in the protein-splicing domain the loop comprising residues 53-70 and adopts a "closed" conformation, thus enabling it to interact with the DNA. We have studied the dynamics of DNA binding and subsequent loop movement by fluorescence techniques. Six amino acids in loop53-70 were individually replaced by cysteine and modified by fluorescein. The interaction of the modified PI-SceI variants with the substrate, unlabeled or labeled with tetramethylrhodamine, was analyzed in equilibrium and stopped-flow experiments. A kinetic scheme was established describing the interaction between PI-SceI and DNA. It is noteworthy that the apparent hinge-flap motion of loop53-70 is only observed in the presence of a divalent metal ion cofactor. Substitution of the major Mg2+-binding ligands in PI-SceI, Asp-218 and Asp-326, by Asn or "nicking" PI-SceI with trypsin at Arg-277, which interferes with formation of an active enzyme.substrate complex, both prevent the conformational change of loop53-70. Deletion of the loop inactivates the enzyme. We conclude that loop53-70 is an important structural element that couples DNA recognition by the splicing domain with DNA cleavage by the catalytic domain and as such "communicates" with the Mg2+ binding sites at the catalytic centers.
PI-SceI是LAGLIDADG家族的归巢内切核酸酶,由分别参与DNA切割和蛋白质剪接的两个结构域组成。两个结构域协同结合识别序列。比较有无底物时PI-SceI的结构,发现蛋白质和DNA都有主要的构象变化。值得注意的是,在蛋白质剪接结构域中,包含53-70位残基的环采取“闭合”构象,从而使其能够与DNA相互作用。我们通过荧光技术研究了DNA结合及随后环运动的动力学。环53-70中的六个氨基酸分别被半胱氨酸取代并用荧光素修饰。在平衡和停流实验中分析了修饰后的PI-SceI变体与未标记或用四甲基罗丹明标记的底物之间的相互作用。建立了一个动力学方案来描述PI-SceI与DNA之间的相互作用。值得注意的是,只有在存在二价金属离子辅因子的情况下才观察到环53-70明显的铰链-襟翼运动。用天冬酰胺取代PI-SceI中主要的Mg2+结合配体天冬氨酸-218和天冬氨酸-326,或用胰蛋白酶在精氨酸-277处“切割”PI-SceI,这会干扰活性酶-底物复合物的形成,二者都能阻止环53-70的构象变化。缺失该环会使酶失活。我们得出结论,环53-70是一个重要的结构元件,它将剪接结构域对DNA的识别与催化结构域对DNA的切割联系起来,因此与催化中心的Mg2+结合位点“通信”。