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首页> 外文期刊>Journal of Molecular Biology >Continuous assays for DNA translocation using fluorescent triplex dissociation: application to type I restriction endonucleases.
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Continuous assays for DNA translocation using fluorescent triplex dissociation: application to type I restriction endonucleases.

机译:使用荧光三链体解离的DNA易位连续测定法:应用于I型限制性核酸内切酶。

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摘要

Fluorescent assays and accompanying kinetic models are described for the analysis of DNA translocation independent of duplex unwinding. A triplex binding site (TBS) was introduced into DNA substrates at precise loci downstream of recognition sequences for type IA, IB and IC restriction endonucleases (EcoKI, EcoAI and EcoR124I, respectively). Each endonuclease was incubated (without ATP) with substrates on which a hexachlorofluoroscein-labelled triplex-forming oligonucleotide (HEX-TFO) was pre-bound. Following addition of ATP, 1-D enzyme motion resulted in collision with, and displacement of, the HEX-TFO, producing a >twofold increase in fluorescent intensity. Alternatively, a decrease in anisotropy following displacement of a rhodamine-labelled TFO was monitored. Using rapid mixing in a stopped-flow fluorimeter, continuous kinetic profiles were produced in which displacement is preceded by a lag-phase, directly proportional to the distance moved. For each enzyme, we obtained not only the translocation rate but also information on slow isomerisation step(s) at initiation. Furthermore, we demonstrated that enzymes deficient in DNA cleavage but with maximal ATPase activity showed initiation and translocation rates identical to wild-type, confirming that DNA strand breaks are not a pre-requisite of motion.
机译:描述了荧光测定法和伴随的动力学模型,用于分析DNA易位,而与双链体展开无关。将三重结合位点(TBS)在IA型,IB型和IC型限制性核酸内切酶(分别为EcoKI,EcoAI和EcoR124I)识别序列的精确位点下游引入DNA底物中。将每种核酸内切酶与底物一起孵育(不使用ATP),底物上预先结合了六氯荧光素标记的三链体形成寡核苷酸(HEX-TFO)。加入ATP后,一维酶的运动导致与HEX-TFO发生碰撞并发生位移,从而使荧光强度增加了两倍以上。或者,监测了若丹明标记的TFO置换后各向异性的降低。在停止流动的荧光计中使用快速混合,可产生连续的动力学曲线,其中位移之前是滞后阶段,滞后阶段与移动的距离成正比。对于每种酶,我们不仅获得了易位率,而且还获得了起始时缓慢异构化步骤的信息。此外,我们证明了缺乏DNA裂解能力但具有最大ATPase活性的酶显示出与野生型相同的起始和易位速率,这证明DNA链断裂不是运动的先决条件。

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