首页> 外文期刊>Journal of Molecular Biology >Rapid pyrophosphate release from transcriptional elongation complexes appears to be coupled to a nucleotide-induced conformational change in E. coli core polymerase.
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Rapid pyrophosphate release from transcriptional elongation complexes appears to be coupled to a nucleotide-induced conformational change in E. coli core polymerase.

机译:从转录延伸复合物中快速释放焦磷酸盐似乎与大肠杆菌核心聚合酶中核苷酸诱导的构象变化有关。

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In the nucleotide addition cycle, pyrophosphate is generated upon incorporation of each nucleotide. Rapid release of pyrophosphate is essential for facile transcription elongation. Stopped-flow kinetic studies involving alterations in the intrinsic protein fluorescence of the core polymerase upon the binding of pyrophosphate to well-defined elongation complexes (ECs) indicate that the intrinsic off-rate of pyrophosphate (k=5.7-8.1 s(-1)) is too slow to account for the rapid rate of nucleotide incorporation that occurs during processive transcription elongation. Stopped-flow kinetic studies on UTP binding followed by UMP incorporation into an EC as monitored by alterations in the intrinsic protein fluorescence of the core polymerase resulted in a set of first-order rate constants that varied in a hyperbolic manner as a function of UTP concentration. This is consistent with a binding step (K(UTP)=17+/-6 muM) followed by a conformational change (k=623+/-54 s(-1)) in the core polymerase. In comparable studies on ATP binding and AMP incorporation into an EC, the data were also consistent with a binding step (K(ATP)=44+/-6 muM) followed by a conformational change (k=411+/-51 s(-1)) in the core polymerase. In stopped-flow kinetic studies with alpha,beta-methyleneadenosine 5' triphosphate, which can bind to the EC but cannot lead to nucleotide incorporation, the analysis of the hyperbolic dependence of the observed first-order rate constant on alpha,beta-methyleneadenosine 5' triphosphate concentration yielded a value of 20+/-13 muM for the apparent dissociation constant and a value of 221+/-36 s(-1) for the first-order rate constant for the associated conformational change in the core polymerase. This indicates that the conformational change in the core polymerase precedes chemistry. In conjunction with previously reported results on the increase in the rate of pyrophosphate release in the presence of the next cognate nucleotide for incorporation, the data are consistent with a model in which rapid pyrophosphate release is coupled to a conformational change in the core polymerase that precedes chemistry and that occurs upon the binding of the next cognate nucleotide for incorporation.
机译:在核苷酸添加循环中,结合每个核苷酸后会生成焦磷酸盐。焦磷酸盐的快速释放对于方便的转录延伸是必不可少的。停流动力学研究涉及焦磷酸与明确定义的延伸复合物(EC)结合后核心聚合酶内在蛋白荧光的改变,表明焦磷酸的内在失效率(k = 5.7-8.1 s(-1) )太慢,无法说明进行性转录延伸期间发生的核苷酸掺入的快速速率。对UTP结合的停流动力学研究,然后通过核心聚合酶内在蛋白质荧光变化监测的UMP掺入EC中,产生了一组一阶速率常数,该常数以双曲线方式随UTP浓度变化。这与核心聚合酶中的结合步骤(K(UTP)= 17 +/- 6μM)随后是构象变化(k = 623 +/- 54 s(-1))一致。在有关ATP结合和AMP掺入EC的可比研究中,数据也与结合步骤(K(ATP)= 44 +/- 6μM)和随后的构象变化(k = 411 +/- 51 s( -1))中的核心聚合酶。在使用可与EC结合但不能导致核苷酸掺入的α,β-亚甲基腺苷5'三磷酸的停流动力学研究中,对观察到的一阶速率常数对α,β-亚甲基腺苷5的双曲线依赖性进行了分析对于核心聚合酶中相关的构象变化,三磷酸酯浓度的表观解离常数值为20 +/- 13μM,一阶速率常数值为221 +/- 36 s(-1)。这表明核心聚合酶中的构象变化先于化学反应。结合先前报道的在引入下一个同源核苷酸时焦磷酸盐释放速率增加的结果,该数据与其中焦磷酸盐快速释放与核心聚合酶构象变化耦合的模型相一致。发生化学反应,并且在结合下一个同源核苷酸时发生。

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