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The catalytic residues of Tn3 resolvase

机译:Tn3溶解酶的催化残基

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摘要

To characterize the residues that participate in the catalysis of DNA cleavage and rejoining by the site-specific recombinase Tn3 resolvase, we mutated conserved polar or charged residues in the catalytic domain of an activated resolvase variant. We analysed the effects of mutations at 14 residues on proficiency in binding to the recombination site (‘site I’), formation of a synaptic complex between two site Is, DNA cleavage and recombination. Mutations of Y6, R8, S10, D36, R68 and R71 resulted in greatly reduced cleavage and recombination activity, suggesting crucial roles of these six residues in catalysis, whereas mutations of the other residues had less dramatic effects. No mutations strongly inhibited binding of resolvase to site I, but several caused conspicuous changes in the yield or stability of the synapse of two site Is observed by non-denaturing gel electrophoresis. The involvement of some residues in both synapsis and catalysis suggests that they contribute to a regulatory mechanism, in which engagement of catalytic residues with the substrate is coupled to correct assembly of the synapse.
机译:为了表征参与DNA切割催化并通过位点特异性重组酶Tn3分解酶重新结合的残基,我们在活化的分解酶变体的催化域中突变了保守的极性或带电残基。我们分析了14个残基突变对熟练结合重组位点(“位点I”),两个位点Is之间形成突触复合体,DNA切割和重组的影响。 Y6,R8,S10,D36,R68和R71的突变导致裂解和重组活性大大降低,表明这六个残基在催化中的关键作用,而其他残基的突变则没有那么显着的作用。没有突变强烈抑制分辨酶与位点I的结合,但是通过非变性凝胶电泳观察到一些突变引起两个位点突触产量或稳定性的明显变化。突触和催化中一些残基的参与表明它们有助于调节机制,其中催化残基与底物的结合被耦合为突触的正确组装。

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