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首页> 外文期刊>Nucleic Acids Research >DNA looping by two-site restriction endonucleases: heterogeneous probability distributions for loop size and unbinding force
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DNA looping by two-site restriction endonucleases: heterogeneous probability distributions for loop size and unbinding force

机译:通过两个位点限制性核酸内切酶进行DNA环化:环大小和解键力的异质概率分布

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摘要

Proteins interacting at multiple sites on DNA via looping play an important role in many fundamental biochemical processes. Restriction endonucleases that must bind at two recognition sites for efficient activity are a useful model system for studyingsuch interactions. Here we used single DNA manipulation to study sixteen known or suspected two-site endonucleases. In eleven cases (BpmI, BsgI, BspMI, Cfr10I, Eco57I, EcoRII, FokI, HpaII, NarI, Sau3AI and SgrAI) we found that substitution of Ca2+ for Mg2+ blocked cleavage and enabled us to observe stable DNA looping. Forced disruption of these loops allowed us to measure the frequency of looping and probability distributions for loop size and unbinding force for each enzyme. In four cases we observedbimodal unbinding force distributions, indicating conformational heterogeneity and/or complex binding energy landscapes. Measured unlooping events ranged in size from 7 to 7500 bp and the most probable size ranged from less than 75 bp to nearly 500 bp, depending on the enzyme. In most cases the size distributions were in much closer agreement with theoretical models that postulate sharp DNA kinking than with classical models of DNA elasticity. Our findings indicate that DNA looping is highly variable depending on the specific protein and does not depend solely on the mechanical properties of DNA.
机译:蛋白质通过环在DNA的多个位点相互作用,在许多基本的生化过程中发挥重要作用。必须在两个识别位点结合以进行有效活性的限制性核酸内切酶是研究此类相互作用的有用模型系统。在这里,我们使用单DNA操作来研究16种已知或怀疑的两点核酸内切酶。在11种情况下(BpmI,BsgI,BspMI,Cfr10I,Eco57I,EcoRII,FokI,HpaII,NarI,Sau3AI和SgrAI),我们发现用Ca2 +替代Mg2 +可以阻断切割,并使我们能够观察到稳定的DNA环化。强制破坏这些环使我们能够测量环化的频率以及每种酶的环大小和解键力的概率分布。在四种情况下,我们观察到双峰解离力分布,表明构象异质性和/或复杂的结合能态。根据酶的不同,测得的脱环事件的大小范围为7至7500 bp,最可能的大小范围为小于75 bp至近500 bp。在大多数情况下,与经典的DNA弹性模型相比,其大小分布与假定DNA发生明显弯折的理论模型更为接近。我们的发现表明,DNA环取决于特定的蛋白质而变化很大,而不仅取决于DNA的机械特性。

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