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T4核酸内切酶V对紫外线照射的DNA的持续作用。

Processive action of T4 endonuclease V on ultraviolet-irradiated DNA.

作者信息

Lloyd R S, Hanawalt P C, Dodson M L

出版信息

Nucleic Acids Res. 1980 Nov 11;8(21):5113-27. doi: 10.1093/nar/8.21.5113.

Abstract

The action of the dimer-specific endonuclease V of bacteriophage T4 was studied on UV-irradiated, covalently-closed circular DNa. Form I ColE1 DNA preparations containing average dimer frequencies ranging from 2.5 to 35 pyrimidine dimers per molecule were treated with T4 endonuclease V and analysed by agarose gel electrophoresis. At all dimer frequencies examined, the production of form III DNA was linear with time and the double-strand scissions were made randomly on the ColE1 DNA genome. Since the observed fraction of form III DNA increased with increasing dimer frequency but the initial rate of loss of form I decreased with increasing dimer frequency, it was postulated that multiple single-strand scissions could be produced in a subset of the DNA population while some DNA molecules contained no scissions. When DNA containing an average of 25 dimers per circle was incubated with limiting enzyme concentrations, scissions appeared at most if not all dimmer sites in some molecules before additional strand scissions were produced in other DNA molecules. The results support a processive model for the interaction of T4 endonuclease V with UV-irradiated DNA.

摘要

研究了噬菌体T4的二聚体特异性内切核酸酶V对紫外线照射的共价闭合环状DNA的作用。用T4内切核酸酶V处理含有平均每个分子有2.5至35个嘧啶二聚体的I型ColE1 DNA制剂,并通过琼脂糖凝胶电泳进行分析。在所有检测的二聚体频率下,III型DNA的产生与时间呈线性关系,双链断裂在ColE1 DNA基因组上随机发生。由于观察到的III型DNA比例随二聚体频率增加而增加,但I型DNA的初始损失率随二聚体频率增加而降低,因此推测在一部分DNA群体中可能产生多个单链断裂,而一些DNA分子则没有断裂。当每个环平均含有25个二聚体的DNA与有限的酶浓度一起孵育时,在其他DNA分子产生额外的链断裂之前,一些分子中最多(如果不是全部)二聚体位点会出现断裂。结果支持了T4内切核酸酶V与紫外线照射的DNA相互作用的连续模型。

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