Ramanathan S, Chary K V, Rao B J
Department of Chemical Sciences and Department of Biological Sciences, Tata Institute of Fundamental Research, Homi Bhabha Road, Mumbai-400 005, India.
Nucleic Acids Res. 2001 May 15;29(10):2097-105. doi: 10.1093/nar/29.10.2097.
Klenow-DNA complex is known to undergo a rate-limiting, protein conformational transition from an 'open' to 'closed' state, upon binding of the 'correct' dNTP at the active site. In the 'closed' state, Mg(2+) mediates a rapid chemical step involving nucleophilic displacement of pyrophosphate by the 3' hydroxyl of the primer terminus. The enzyme returns to the 'open' state upon the release of PPi and translocation permits the next round of reaction. To determine whether Klenow can translocate to the next site on the addition of the next dNTP, without the preceding chemical step, we studied the ternary complex (Klenow-DNA-dNTP) in the absence of Mg(2+). While the ternary complex is proficient in chemical addition of dNTPs in Mg(2+), as revealed by primer extensions, the same in Mg(2+)-deficient conditions lead to non-covalent (physical) sequestration of first two 'correct' dNTPs in the ternary complex. Moreover, the second dNTP traps the first one in the DNA-helix of the ternary complex. Such a dNTP-DNA complex is found to be stable even after the dissociation of KLENOW: This reveals the novel state of the dNTP-DNA complex where the complementary base is stacked in a DNA-helix non-covalently, without the phosphodiester linkage. Further, shuttling of the DNA between the polymerase and the exonuclease site mediates the release of such a DNA complex. Interestingly, Klenow in such a Mg(2+)-deficient ternary complex exhibits a 'closed' conformation.
已知Klenow-DNA复合物在活性位点结合“正确的”脱氧核苷三磷酸(dNTP)时,会经历从“开放”状态到“关闭”状态的限速蛋白质构象转变。在“关闭”状态下,镁离子(Mg(2+))介导一个快速的化学反应步骤,即引物末端的3'羟基对焦磷酸进行亲核取代。焦磷酸(PPi)释放后,酶回到“开放”状态,移位允许下一轮反应。为了确定在没有先前化学反应步骤的情况下,加入下一个dNTP时Klenow是否能移位到下一个位点,我们研究了在没有Mg(2+)的情况下的三元复合物(Klenow-DNA-dNTP)。正如引物延伸所揭示的,虽然三元复合物在Mg(2+)存在时能够熟练地进行dNTP的化学添加,但在缺乏Mg(2+)的条件下,同样的情况会导致三元复合物中前两个“正确的”dNTP进行非共价(物理)螯合。此外,第二个dNTP将第一个dNTP捕获在三元复合物的DNA螺旋中。即使在Klenow解离后,这种dNTP-DNA复合物仍被发现是稳定的:这揭示了dNTP-DNA复合物的新状态,即互补碱基以非共价方式堆积在DNA螺旋中,没有磷酸二酯键。此外,DNA在聚合酶和核酸外切酶位点之间的穿梭介导了这种DNA复合物的释放。有趣的是,在这种缺乏Mg(2+)的三元复合物中的Klenow呈现出“关闭”构象。