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首页> 外文期刊>Journal of Molecular Biology >DNA CLEAVAGE AT TWO RECOGNITION SITES BY THE SFII RESTRICTION ENDONUCLEASE - SALT DEPENDENCE OF CIS AND TRANS INTERACTIONS BETWEEN DISTANT DNA SITES
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DNA CLEAVAGE AT TWO RECOGNITION SITES BY THE SFII RESTRICTION ENDONUCLEASE - SALT DEPENDENCE OF CIS AND TRANS INTERACTIONS BETWEEN DISTANT DNA SITES

机译:SFII限制性内切酶对两个识别位点的DNA切割-盐依赖性的CIS和远距离DNA位点之间的跨相互作用。

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摘要

At low ionic strength, the SfiI restriction enzyme cleaved at similar rates both supercoiled and linear DNA with two SfiI sites and linear DNA with one SfiI site. For the substrates with two sites, the majority of the DNA was converted directly to products cut at both sites; the enzyme appears to bind to two sites before catalyzing its reactions, looping out the intervening DNA. At high ionic strength, linear DNA with one SfiI site was not cut at all linear DNA with two sites was cleaved slowly while supercoiled DNA with two sites was cleaved rapidly, though only half of the DNA with two sites was cut at both sites; the DNA that had been cut at one site was not cleaved again at the remaining site. The singly cut product must therefore have been generated by a reaction incorporating both sites. All DNA cleavage reactions by SfiI thus involve the tetrameric enzyme bound to two copies of its recognition sequence, but weakened DNA-protein interactions at high ionic strength can cause this complex to dissociate before cleaving both sites. Intramolecular interactions between distant DNA sites are generally thought to be enhanced by supercoiling and to be more stable than intermolecular interactions. The preference of SfiI at high ionic strength for substrates with two sites over substrates with one site and, in the former ease, for supercoiled over linear DNA, validates this view. At low ionic strength, the similar rates with the different substrates may be due to rate-limiting product dissociation. (C) 1995 Academic Press Limited [References: 52]
机译:在低离子强度下,具有两个SfiI位点的超螺旋和线性DNA和具有一个SfiI位点的线性DNA的SfiI限制酶均以相似的速率裂解。对于具有两个位点的底物,大多数DNA直接转化为在两个位点切割的产物;该酶在催化其反应之前似乎先结合了两个位点,环回了中间的DNA。在高离子强度下,一个SfiI位点的线性DNA不会被切割,两个位点的线性DNA都被缓慢切割,而两个位点的超螺旋DNA则被迅速切割,尽管两个位点的DNA仅有一半被切割了。在一个位点切割的DNA在剩下的位点不再被切割。因此,单切产物必须已经通过结合两个位点的反应产生。因此,SfiI进行的所有DNA切割反应均涉及结合至其识别序列的两个拷贝的四聚体酶,但在高离子强度下弱化的DNA-蛋白质相互作用可导致该复合物在切割两个位点之前解离。通常认为,远距离DNA位点之间的分子内相互作用可通过超螺旋增强,并且比分子间相互作用更稳定。在具有高离子强度的情况下,具有两个位点的底物比具有一个位点的底物更优先选择SfiI,并且在较容易的情况下,相对于线性DNA而言,超螺旋比SfiI更能证明这一观点。在低离子强度下,不同底物的相似速率可能是由于限速产物解离。 (C)1995 Academic Press Limited [参考号:52]

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