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一种用于检测由致癌或诱变剂导致的脱氧核糖核酸螺旋结构损伤的灵敏核酸内切酶探针。

A sensitive endonuclease probe for lesions in deoxyribonucleic acid helix structure produced by carcinogenic or mutagenic agents.

作者信息

Legerski R J, Gray H B, Robberson D L

出版信息

J Biol Chem. 1977 Dec 10;252(23):8740-6.

PMID:925019
Abstract

The highly single strand-specific extracellular nuclease of Pseudomonas BAL 31 is shown to cleave non-supercoiled closed circular duplex PM2 bacteriophage DNA containing regions of altered helix structure produced in vitro by irradiation with ultraviolet light or by treatment with the carcinogen, N-acetoxy-N-2-acetylaminofluorene. Untreated samples of this DNA are affected very little by the nuclease. The unwinding of the DNA helix associated with the above treatment renders the closed circular DNA positively supercoiled compared to untreated samples. The extent of unwinding can be accurately measured and correlated with the average number of lesions per molecule of DNA by monitoring the alterations of the electrophoretic patterns, relative to those observed for untreated DNA, of such DNA in agarose gels. Interstrand cross-links and mismatched base pairs produced by treatment of non-supercoilded circular duplex DNA with the mutagen, nitrous acid, do not detectably unwind the DNA helix. The nitrous acid-treated DNA provides substrates for cleavage by the Pseudomonas nuclease which are likely to be the interstrand cross-links rather than the mismatched base pairs. Use of the Pseudomonas nuclease in conjunction with agarose gel electrophoresis can provide a powerful method for the detection of damage in duplex DNA such as that introduced by carcinogenic and mutagenic agents.

摘要

假单胞菌BAL 31的高度单链特异性细胞外核酸酶可切割非超螺旋闭合环状双链PM2噬菌体DNA,该DNA含有体外经紫外线照射或用致癌物N - 乙酰氧基 - N - 2 - 乙酰氨基芴处理后产生的螺旋结构改变区域。这种DNA的未处理样品受核酸酶的影响很小。与上述处理相关的DNA螺旋解旋使闭合环状DNA与未处理样品相比呈正超螺旋状态。通过监测琼脂糖凝胶中此类DNA相对于未处理DNA的电泳图谱变化,可准确测量解旋程度并将其与每分子DNA的平均损伤数相关联。用诱变剂亚硝酸处理非超螺旋环状双链DNA产生的链间交联和错配碱基对不会使DNA螺旋明显解旋。亚硝酸处理过的DNA为假单胞菌核酸酶的切割提供了底物,这些底物可能是链间交联而非错配碱基对。将假单胞菌核酸酶与琼脂糖凝胶电泳结合使用,可为检测双链DNA中的损伤(如致癌剂和诱变剂引入的损伤)提供一种强大的方法。

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