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Metal ions bound at the active site of the junction-resolving enzyme T7 endonuclease I

机译:结合在连接分辨酶T7内切核酸酶I活性位点的金属离子

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摘要

T7 endonuclease I is a nuclease that is selective for the structure of the four-way DNA junction. The active site is similar to those of a number of restriction enzymes. We have solved the crystal structure of endonuclease I with a wild-type active site. Diffusion of manganese ions into the crystal revealed two peaks of electron density per active site, defining two metal ion-binding sites. Site 1 is fully occupied, and the manganese ion is coordinated by the carboxylate groups of Asp55 and Glu65, and the main chain carbonyl of Thr66. Site 2 is partially occupied, and the metal ion has a single protein ligand, the remaining carboxylate oxygen atom of Asp55. Isothermal titration calorimetry showed the sequential exothermic binding of two manganese ions in solution, with dissociation constants of 0.58 ± 0.019 and 14 ± 1.5 mM. These results are consistent with a two metal ion mechanism for the cleavage reaction, in which the hydrolytic water molecule is contained in the first coordination sphere of the site 1-bound metal ion.
机译:T7核酸内切酶I是一种对四向DNA连接结构具有选择性的核酸酶。活性位点与许多限制性酶的相似。我们已经解决了具有野生型活性位点的核酸内切酶I的晶体结构。锰离子向晶体中的扩散揭示了每个活性位点的两个电子密度峰,从而定义了两个金属离子结合位点。位点1被完全占据,并且锰离子由Asp55和Glu65的羧酸酯基团以及Thr66的主链羰基配位。位点2被部分占据,金属离子具有单个蛋白质配体,即Asp55的其余羧基氧原子。等温滴定热法显示溶液中两个锰离子的连续放热结合,解离常数为0.58±0.019和14±1.5mM。这些结果与裂解反应的两种金属离子机理一致,其中水解水分子包含在结合1位金属离子的第一个配位球中。

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