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在缺乏核酸外切酶V和VII以及DNA聚合酶I的5'至3'核酸外切酶活性的大肠杆菌菌株中嘧啶二聚体的切除。

Pyrimidine dimer excision in Escherichia coli strains deficient in exonucleases V and VII and in the 5' leads to 3' exonuclease of DNA polymerase I.

作者信息

Chase J W, Masker W E, Murphy J B

出版信息

J Bacteriol. 1979 Jan;137(1):234-42. doi: 10.1128/jb.137.1.234-242.1979.

Abstract

An isogenic series of Escherichia coli strains deficient in various combinations of three 5' leads to 3' exonucleases (exonuclease V, exonuclease VII, and the 5' leads to 3' exonuclease of DNA polymerase I) was constructed and examined for the ability to excise pyrimidine dimers after UV irradiation. Although the recB and recC mutations (deficient in exonuclease V) proved to be incompatible with the polA(Ex) mutation (deficient in the 5' leads to 3' exonuclease of DNA polymerase I), it was possible to reduce the level of the recB,C exonuclease by the use of temperature-sensitive recB270 recC271 mutants. It was found that, by employing strains deficient in exonuclease V, postirradiation DNA degradation could be reduced and dimer excision measurements could be facilitated. Mutants deficient in exonuclease V were found to excise dimers at a rate comparable to that of the wild type. Mutants deficient in exonuclease V and the 5' leads to 3' exonuclease of DNA polymerase I are slightly slower than the wild type at removing dimers accumulated after doses in excess of 40 J/m2. However, although strains with reduced levels of exonuclease VII excised dimers at the same rate as the wild type, the addition of an exonuclease VII deficiency to a strain with reduced levels of exonuclease V and the 5' leads to 3' exonuclease of DNA polymerase I caused a marked decrease in the rate and extent of dimer excision. These observations support previous indications that the 5' leads to 3' exonuclease of DNA polymerase I is important in dimer removal and also suggest a role for exonuclease VII in the excision repair process.

摘要

构建了一系列大肠杆菌同基因菌株,这些菌株缺失三种5'至3'核酸外切酶(核酸外切酶V、核酸外切酶VII和DNA聚合酶I的5'至3'核酸外切酶)的各种组合,并检测其在紫外线照射后切除嘧啶二聚体的能力。尽管recB和recC突变(缺乏核酸外切酶V)被证明与polA(Ex)突变(缺乏DNA聚合酶I的5'至3'核酸外切酶)不兼容,但通过使用温度敏感的recB270 recC271突变体可以降低recB、C核酸外切酶的水平。结果发现,通过使用缺乏核酸外切酶V的菌株,可以减少照射后DNA的降解,并便于进行二聚体切除测量。发现缺乏核酸外切酶V的突变体切除二聚体的速率与野生型相当。缺乏核酸外切酶V和DNA聚合酶I的5'至3'核酸外切酶的突变体在去除超过40 J/m2剂量后积累的二聚体时比野生型略慢。然而,尽管核酸外切酶VII水平降低的菌株切除二聚体的速率与野生型相同,但在核酸外切酶V和DNA聚合酶I的5'至3'核酸外切酶水平降低的菌株中添加核酸外切酶VII缺陷会导致二聚体切除的速率和程度显著降低。这些观察结果支持了先前的迹象,即DNA聚合酶I的5'至3'核酸外切酶在二聚体去除中很重要,也表明核酸外切酶VII在切除修复过程中起作用。

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