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首页> 外文期刊>Nucleic acids research >Transient cleavage kinetics of the Eco RI restriction endonuclease measured in a pulsed quenchflow apparatus: enzyme concentration-dependent activity change
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Transient cleavage kinetics of the Eco RI restriction endonuclease measured in a pulsed quenchflow apparatus: enzyme concentration-dependent activity change

机译:在脉冲淬灭气流仪中测量的Eco RI限制性核酸内切酶的瞬时裂解动力学:酶浓度依赖性活性变化

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We report measurements of the cleavage rate of pBR 322 plasmid DNA by the restriction endonuclease Eco RI as a function of enzyme and DNA concentration. The reaction, which at high excess of enzyme over DNA occurs between 0.2 and 5 seconds, was studied by the means of a microprocessor controlled pulsed quench-flow apparatus. Enzyme concentrations were between 1 and 100 nM with DNA concentrations being 3 to 6 nM (specific Eco RI sites). The catalytic constants for cleavage of the first and second phosphodiester bonds as measured at high enzyme concentration both have the same value of 0.35 sec?1 at 21 °C. At enzyme concentrations comparable to or less than DNA concentration, the rate of the first cleavage is proportional to enzyme concentration, while the second step is independent of concentration. At approx. 10 nM Eco RI endonuclease concentration, a rate increase shows up in both the first and the second cleavage. We suggest that this increase is due to the tetramerization reported by Modrich & Zabel1, which occurs in this concentration range.
机译:我们报告了限制性内切酶Eco RI对pBR 322质粒DNA切割速率的测量,该切割速率是酶和DNA浓度的函数。通过微处理器控制的脉冲淬灭流装置研究了在DNA过量酶超过0.2到5秒之间发生的反应。酶浓度为1至100 nM,DNA浓度为3至6 nM(特定的Eco RI位点)。在高酶浓度下测得的第一和第二磷酸二酯键裂解的催化常数在21°C时均为0.35 sec 1 。在等于或小于DNA浓度的酶浓度下,第一次切割的速率与酶浓度成正比,而第二步与浓度无关。大约在10 nM Eco RI核酸内切酶浓度下,第一次和第二次切割均显示速率增加。我们认为,这种增加是由于Modrich&Zabel 1 报告的四聚作用,该四聚作用发生在该浓度范围内。

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