Subramaniam Srisunder, Kamadurai Hari B, Foster Mark P
Department of Biochemistry and Biophysics Program, The Ohio State University, 484 West12th Ave, Columbus, OH 43210, USA.
J Mol Biol. 2007 Jul 6;370(2):303-14. doi: 10.1016/j.jmb.2007.04.024. Epub 2007 Apr 19.
Site-specific recombinases of the lambda-integrase family recognize and cleave their cognate DNA sites through cooperative binding to opposite sides of the DNA substrate by a C-terminal catalytic domain and a flexibly linked "core-binding" domain; regulation of this cleavage is achieved via the formation of higher-order complexes. We report that the core-binding domain of lambda-integrase is able to stimulate the activity of the catalytic domain even when the two domains are not linked. This trans stimulation is accomplished without significantly increasing the affinity of the catalytic domain for its DNA substrate. Moreover, we show that mutations in the DNA substrate can abrogate this effect while retaining specificity determinants for cleavage. Since the domains do not significantly interact directly, this finding implies that trans activation is achieved via the DNA substrate in a manner that may be mechanistically important in this and similar DNA binding and cleaving enzymes.
λ整合酶家族的位点特异性重组酶通过C端催化结构域和柔性连接的“核心结合”结构域协同结合到DNA底物的相对侧来识别并切割其同源DNA位点;这种切割的调控是通过形成高阶复合物实现的。我们报告称,即使两个结构域没有连接,λ整合酶的核心结合结构域也能够刺激催化结构域的活性。这种反式刺激在不显著增加催化结构域对其DNA底物亲和力的情况下即可完成。此外,我们表明DNA底物中的突变可以消除这种效应,同时保留切割的特异性决定因素。由于这些结构域没有明显的直接相互作用,这一发现意味着反式激活是通过DNA底物以一种在这种及类似的DNA结合和切割酶中可能具有重要机制意义的方式实现的。