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镁离子与EcoRV核酸内切酶活性位点的结合:分辨率为2埃的底物和产物DNA复合物的晶体学研究

Mg2+ binding to the active site of EcoRV endonuclease: a crystallographic study of complexes with substrate and product DNA at 2 A resolution.

作者信息

Kostrewa D, Winkler F K

机构信息

F. Hoffmann-LaRoche Ltd., Basel, Switzerland.

出版信息

Biochemistry. 1995 Jan 17;34(2):683-96. doi: 10.1021/bi00002a036.

Abstract

The type II restriction endonuclease EcoRV was crystallized as a complex with the substrate DNA undecamer AAAGATATCTT (recognition sequence underlined). These crystals diffract to much better resolution (2 A) than was the case for the previously reported complex with the decamer GGGATATCCC [Winkler, F. K., Banner, D. W., Oefner, C., Tsernoglou, D., Brown, R. S., Heathman, S. P., Bryan, R. K., Martin, P. D., Petratos, K., & Wilson, K. S. (1993) EMBO J. 12, 1781-1795]. The crystal structure contains one dimer complex in the asymmetric unit and was solved by molecular replacement. The same kinked DNA conformation characteristic for enzyme-bound cognate DNA is observed. Crystals, soaked with Mg2+, show the essential cofactor bound at only one active site of the dimer, and the DNA is not cleaved. The Mg2+ has one oxygen from the scissile phosphodiester group and two carboxylate oxygens, one form Asp74 and one from Asp90, in its octahedral ligand sphere. The scissile phosphodiester group is pulled by 1 A toward the Mg2+. After substrate cleavage in solution, isomorphous crystals containing the enzyme--product--Mg2+ complex were obtained. In this structure, each of the 5'-phosphate groups is bound to two Mg2+. The kinked DNA conformation is essentially maintained, but the two central adenines, 3' to the cleavage sites, form an unusual cross-strand base stacking. The structures have been refined to R factors of 0.16 at 2.1-2.0 A resolution maintaining very good stereochemistry. On the basis of these structures and inspired by recent kinetic data [Vipond, I. B., & Halford, S. E. (1994) Biochemistry (second paper of three in this issue)], we have constructed a transition state model with two metals bound to the scissile phosphorane group.

摘要

II型限制性内切酶EcoRV与底物DNA十一聚体AAAGATATCTT(识别序列下划线标注)形成复合物后结晶。这些晶体的衍射分辨率(2 Å)比之前报道的与十聚体GGGATATCCC形成的复合物要好得多[温克勒,F.K.,班纳,D.W.,奥夫纳,C.,切尔诺格卢,D.,布朗,R.S.,希思曼,S.P.,布莱恩,R.K.,马丁,P.D.,佩特拉托斯,K.,&威尔逊,K.S.(1993)《欧洲分子生物学组织杂志》12,1781 - 1795]。晶体结构在不对称单元中包含一个二聚体复合物,通过分子置换法解析得到。观察到与酶结合的同源DNA具有相同的扭结DNA构象特征。用Mg²⁺浸泡后的晶体显示,必需的辅助因子仅结合在二聚体的一个活性位点上,且DNA未被切割。Mg²⁺在其八面体配体球中与来自可裂磷酸二酯基团的一个氧以及两个羧基氧结合,其中一个羧基氧来自天冬氨酸74,另一个来自天冬氨酸90。可裂磷酸二酯基团被拉向Mg²⁺ 1 Å。在溶液中底物切割后,获得了含有酶 - 产物 - Mg²⁺复合物的同晶型晶体。在这个结构中,每个5'-磷酸基团都与两个Mg²⁺结合。扭结DNA构象基本保持,但切割位点3'端的两个中心腺嘌呤形成了一种不寻常的跨链碱基堆积。这些结构在2.1 - 2.0 Å分辨率下精修至R因子为0.16,保持了非常好的立体化学性质。基于这些结构并受近期动力学数据启发[维庞德,I.B.,&哈尔福德,S.E.(1994)《生物化学》(本期三篇论文中的第二篇)],我们构建了一个过渡态模型,其中两个金属与可裂磷烷基团结合。

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