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如果DNA聚合酶V和由dnaQ编码的3'至5'核酸外切酶校对功能失活,大肠杆菌DNA聚合酶III可以有效地越过T-T顺式-环丁烷二聚体进行复制。

Escherichia coli DNA polymerase III can replicate efficiently past a T-T cis-syn cyclobutane dimer if DNA polymerase V and the 3' to 5' exonuclease proofreading function encoded by dnaQ are inactivated.

作者信息

Borden Angela, O'Grady Paul I, Vandewiele Dominique, Fernández de Henestrosa Antonio R, Lawrence Christopher W, Woodgate Roger

机构信息

Section on DNA Replication, Repair, and Mutagenesis, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892-2725, USA.

出版信息

J Bacteriol. 2002 May;184(10):2674-81. doi: 10.1128/JB.184.10.2674-2681.2002.

DOI:10.1128/JB.184.10.2674-2681.2002
PMID:11976296
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC135032/
Abstract

Although very little replication past a T-T cis-syn cyclobutane dimer normally takes place in Escherichia coli in the absence of DNA polymerase V (Pol V), we previously observed as much as half of the wild-type bypass frequency in Pol V-deficient (DeltaumuDC) strains if the 3' to 5' exonuclease proofreading activity of the Pol III epsilon subunit was also disabled by mutD5. This observation might be explained in at least two ways. In the absence of Pol V, wild-type Pol III might bind preferentially to the blocked primer terminus but be incapable of bypass, whereas the proofreading-deficient enzyme might dissociate more readily, providing access to bypass polymerases. Alternatively, even though wild-type Pol III is generally regarded as being incapable of lesion bypass, proofreading-impaired Pol III might itself perform this function. We have investigated this issue by examining dimer bypass frequencies in DeltaumuDC mutD5 strains that were also deficient for Pol I, Pol II, and Pol IV, both singly and in all combinations. Dimer bypass frequencies were not decreased in any of these strains and indeed in some were increased to levels approaching those found in strains containing Pol V. Efficient dimer bypass was, however, entirely dependent on the proofreading deficiency imparted by mutD5, indicating the surprising conclusion that bypass was probably performed by the mutD5 Pol III enzyme itself. This mutant polymerase does not replicate past the much more distorted T-T (6-4) photoadduct, however, suggesting that it may only replicate past lesions, like the T-T dimer, that form base pairs normally.

摘要

尽管在缺乏DNA聚合酶V(Pol V)的情况下,大肠杆菌中通常很少有越过T-T顺式-顺环丁烷二聚体的复制发生,但我们之前观察到,如果Pol III ε亚基的3'至5'核酸外切酶校对活性也因mutD5突变而丧失,那么在缺乏Pol V(ΔumuDC)的菌株中,越过频率可达野生型的一半之多。这一观察结果至少可以从两种方式来解释。在没有Pol V的情况下,野生型Pol III可能优先结合到受阻的引物末端,但无法越过,而缺乏校对功能的酶可能更容易解离,从而为越过聚合酶提供了通路。或者,尽管野生型Pol III通常被认为无法越过损伤,但校对功能受损的Pol III本身可能执行这一功能。我们通过检查单缺或全缺Pol I、Pol II和Pol IV的ΔumuDC mutD5菌株中的二聚体越过频率来研究这个问题。在这些菌株中,二聚体越过频率均未降低,实际上在某些菌株中还增加到了接近含有Pol V的菌株中的水平。然而,高效的二聚体越过完全依赖于mutD5所导致的校对缺陷,这表明了一个令人惊讶的结论,即越过可能是由mutD5 Pol III酶本身完成的。然而,这种突变聚合酶无法越过更为扭曲的T-T(6-4)光加合物,这表明它可能只能越过像T-T二聚体这样通常能形成碱基对的损伤。

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本文引用的文献

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The biochemical basis and in vivo regulation of SOS-induced mutagenesis promoted by Escherichia coli DNA polymerase V (UmuD'2C).大肠杆菌DNA聚合酶V(UmuD'2C)促进的SOS诱导诱变的生化基础及体内调控
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Crystal structure of a DinB lesion bypass DNA polymerase catalytic fragment reveals a classic polymerase catalytic domain.DinB损伤旁路DNA聚合酶催化片段的晶体结构揭示了一个经典的聚合酶催化结构域。
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The Y-family of DNA polymerases.DNA聚合酶的Y家族。
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Managing DNA polymerases: coordinating DNA replication, DNA repair, and DNA recombination.调控DNA聚合酶:协调DNA复制、DNA修复和DNA重组。
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