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甲苯处理的细胞中依赖uvrA、B基因产物的DNA修复合成

DNA repair synthesis dependent on the uvrA,B gene products in toluene-treated cells.

作者信息

Moses R E, Moody E E

出版信息

J Biol Chem. 1975 Oct 25;250(20):8055-61.

PMID:1100628
Abstract

Ultraviolet irradiation of toluene-treated Escherichia coli causes an inhibition of replicative DNA synthesis. This is followed by the appearance of nonconservative DNA repair synthesis which does not require either the polymerase or 5' leads to 3' exonucleolytic activities of DNA polymerase I. The repair synthesis may be catalyzed by DNA polymerase III activity but does not require a functional DNA polymerase II. The ultraviolet-induced synthesis requires ATP and is dependent on a functional uvrA and uvrB gene product. However, other uvr gene products are not required for the synthesis. The recB function is also not required.

摘要

用甲苯处理过的大肠杆菌经紫外线照射会抑制复制性DNA合成。随后会出现非保守性DNA修复合成,这种合成既不需要DNA聚合酶I的聚合酶活性,也不需要其5'至3'核酸外切酶活性。修复合成可能由DNA聚合酶III的活性催化,但不需要功能性的DNA聚合酶II。紫外线诱导的合成需要ATP,并且依赖于功能性的uvrA和uvrB基因产物。然而,该合成不需要其他uvr基因产物。recB功能也不需要。

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