首页> 美国卫生研究院文献>Nucleic Acids Research >T4 DNA polymerase (3-5) exonuclease an enzyme for the detection and quantitation of stable DNA lesions: the ultraviolet light example.
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T4 DNA polymerase (3-5) exonuclease an enzyme for the detection and quantitation of stable DNA lesions: the ultraviolet light example.

机译:T4 DNA聚合酶(3-5)核酸外切酶一种用于检测和定量稳定DNA损伤的酶:紫外线的例子。

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摘要

Ultraviolet light irradiation of DNA results in the formation of two major types of photoproducts, cyclobutane dimers and 6-4' [pyrimidin-2'-one] -pyrimidine photoproducts. The enzyme T4 DNA polymerase possesses a 3' to 5' exonuclease activity and hydrolyzes both single and double stranded DNA in the absence of deoxynucleotide triphosphate substrates. Here we describe the use of T4 DNA polymerase associated exonuclease for the detection and quantitation of UV light-induced damage on both single and double stranded DNA. Hydrolysis of UV-irradiated single or double stranded DNA by the DNA polymerase associated exonuclease is quantitatively blocked by both cyclobutane dimers and (6-4) photoproducts. The enzyme terminates digestion of UV-irradiated DNA at the 3' pyrimidine of both cyclobutane dimers and (6-4) photoproducts. For a given photoproduct site, the induction of cyclobutane dimers was the same for both single and double stranded DNA. A similar relationship was also found for the induction of (6-4) photoproducts. These results suggest that the T4 DNA polymerase proofreading activity alone cannot remove these UV photoproducts present on DNA templates, but instead must function together with enzymes such as the T4 pyrimidine dimer-specific endonuclease in the repair of DNA photoproducts. The T4 DNA polymerase associated exonuclease should be useful for the analysis of a wide variety of bulky, stable DNA adducts.
机译:DNA的紫外线照射导致形成两种主要类型的光产物,即环丁烷二聚体和6-4'[嘧啶-2'-一]-嘧啶光产物。 T4 DNA聚合酶具有3'至5'核酸外切酶活性,可在不存在脱氧核苷酸三磷酸底物的情况下水解单链和双链DNA。在这里,我们描述了使用T4 DNA聚合酶相关的核酸外切酶检测和定量对单链和双链DNA的紫外线诱导的损伤。 DNA聚合酶相关核酸外切酶对UV辐射的单链或双链DNA的水解被环丁烷二聚体和(6-4)光产物定量阻断。该酶在环丁烷二聚体和(6-4)光产物的3'嘧啶处终止UV辐射的DNA的消化。对于给定的光产物位点,对于单链和双链DNA,环丁烷二聚体的诱导是相同的。对于(6-4)光产物的诱导也发现了类似的关系。这些结果表明,单独的T4 DNA聚合酶校对活性不能去除DNA模板上存在的这些UV光产物,而必须与诸如T4嘧啶二聚体特异性核酸内切酶之类的酶一起修复DNA光产物。 T4 DNA聚合酶相关的核酸外切酶应可用于分析各种庞大,稳定的DNA加合物。

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