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1
Characterization of mutational specificity within the lacI gene for a mutD5 mutator strain of Escherichia coli defective in 3'----5' exonuclease (proofreading) activity.对大肠杆菌的一个mutD5突变菌株中lacI基因内突变特异性的表征,该菌株在3'→5'核酸外切酶(校对)活性方面存在缺陷。
J Bacteriol. 1986 Jul;167(1):130-7. doi: 10.1128/jb.167.1.130-137.1986.
2
The interaction of the Escherichia coli mutD and mutT pathways in the prevention of A:T-->C:G transversions.大肠杆菌mutD和mutT途径在预防A:T→C:G颠换中的相互作用。
Mutat Res. 1992 Dec 16;284(2):307-19. doi: 10.1016/0027-5107(92)90015-t.
3
Specificity of spontaneous mutations induced in mutA mutator cells.mutA突变细胞中诱导产生的自发突变的特异性。
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4
DNA sequence analysis of gamma-radiation (anoxic)-induced and spontaneous lacId mutations in Escherichia coli K-12.大肠杆菌K-12中γ辐射(缺氧)诱导的和自发的lacId突变的DNA序列分析
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5
Mutational specificity of a proof-reading defective Escherichia coli dnaQ49 mutator.校对缺陷型大肠杆菌dnaQ49突变体的突变特异性
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6
Saturation of mismatch repair in the mutD5 mutator strain of Escherichia coli.大肠杆菌mutD5突变菌株中错配修复的饱和
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7
Mutator strains of Escherichia coli, mutD and dnaQ, with defective exonucleolytic editing by DNA polymerase III holoenzyme.大肠杆菌的突变菌株mutD和dnaQ,其DNA聚合酶III全酶的核酸外切酶编辑功能存在缺陷。
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The base substitution and frameshift fidelity of Escherichia coli DNA polymerase III holoenzyme in vitro.体外大肠杆菌DNA聚合酶III全酶的碱基置换和移码保真度
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Mechanisms of mutagenesis in the Escherichia coli mutator mutD5: role of DNA mismatch repair.大肠杆菌突变体mutD5的诱变机制:DNA错配修复的作用。
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Structure and function of dnaQ and mutD mutators of Escherichia coli.大肠杆菌dnaQ和mutD突变体的结构与功能
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引用本文的文献

1
Mutational spectrum analysis of RNase H(35) deficient Saccharomyces cerevisiae using fluorescence-based directed termination PCR.使用基于荧光的定向终止PCR对核糖核酸酶H(35)缺陷型酿酒酵母进行突变谱分析。
Nucleic Acids Res. 2000 Sep 15;28(18):3649-56. doi: 10.1093/nar/28.18.3649.
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DNA sequence analysis of spontaneous mutation in a PolA1 strain of Escherichia coli indicates sequence-specific effects.对大肠杆菌PolA1菌株自发突变的DNA序列分析表明存在序列特异性效应。
Mol Gen Genet. 1987 May;207(2-3):267-72. doi: 10.1007/BF00331588.
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Mutations of the Escherichia coli lacUV5 promoter resulting in increased expression in Bacillus subtilis.大肠杆菌lacUV5启动子的突变导致其在枯草芽孢杆菌中的表达增加。
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Mechanisms of mutagenesis in the Escherichia coli mutator mutD5: role of DNA mismatch repair.大肠杆菌突变体mutD5的诱变机制:DNA错配修复的作用。
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Mispair formation in DNA can involve rare tautomeric forms in the template.DNA中的错配形成可能涉及模板中罕见的互变异构形式。
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6
Saturation of mismatch repair in the mutD5 mutator strain of Escherichia coli.大肠杆菌mutD5突变菌株中错配修复的饱和
J Bacteriol. 1989 Aug;171(8):4494-7. doi: 10.1128/jb.171.8.4494-4497.1989.
7
Escherichia coli mutator mutD5 is defective in the mutHLS pathway of DNA mismatch repair.大肠杆菌突变体mutD5在DNA错配修复的mutHLS途径中存在缺陷。
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8
A specific role of MutT protein: to prevent dG.dA mispairing in DNA replication.MutT蛋白的一个特定作用:防止DNA复制过程中dG.dA错配。
Proc Natl Acad Sci U S A. 1989 Jun;86(11):3949-52. doi: 10.1073/pnas.86.11.3949.
9
Variation in salmonid mitochondrial DNA: evolutionary constraints and mechanisms of substitution.鲑鱼线粒体DNA的变异:进化限制与替代机制
J Mol Evol. 1989 Sep;29(3):233-45. doi: 10.1007/BF02100207.
10
Reversion of autonomously replicating sequence mutations in Saccharomyces cerevisiae: creation of a eucaryotic replication origin within procaryotic vector DNA.
Mol Cell Biol. 1990 Jan;10(1):265-72. doi: 10.1128/mcb.10.1.265-272.1990.

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1
An amino-terminal fragment of lac repressor binds specifically to lac operator.乳糖阻遏物的氨基端片段特异性结合乳糖操纵基因。
Proc Natl Acad Sci U S A. 1978 Dec;75(12):5851-4. doi: 10.1073/pnas.75.12.5851.
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Isolation of the lac repressor.乳糖阻遏蛋白的分离
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Molecular basis for substitution mutations. Effect of primer terminal and template residues on nucleotide selection by phage T4 DNA polymerase in vitro.替换突变的分子基础。引物末端和模板残基对噬菌体T4 DNA聚合酶体外核苷酸选择的影响。
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Escherichia coli mutator mutants deficient in methylation-instructed DNA mismatch correction.缺乏甲基化指导的DNA错配修复的大肠杆菌突变体
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Structure of the DNA-binding region of lac repressor inferred from its homology with cro repressor.从乳糖阻遏物与Cro阻遏物的同源性推断出的乳糖阻遏物DNA结合区域的结构。
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对大肠杆菌的一个mutD5突变菌株中lacI基因内突变特异性的表征,该菌株在3'→5'核酸外切酶(校对)活性方面存在缺陷。

Characterization of mutational specificity within the lacI gene for a mutD5 mutator strain of Escherichia coli defective in 3'----5' exonuclease (proofreading) activity.

作者信息

Fowler R G, Schaaper R M, Glickman B W

出版信息

J Bacteriol. 1986 Jul;167(1):130-7. doi: 10.1128/jb.167.1.130-137.1986.

DOI:10.1128/jb.167.1.130-137.1986
PMID:3522541
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC212851/
Abstract

The mutD (dnaQ) gene of Escherichia coli codes for the epsilon subunit of the DNA polymerase III holoenzyme which is involved in 3'----5' exonuclease proofreading activity. We determined the mutational specificity of the mutator allele, mutD5, in the lacI gene of E. coli. The mutD5 mutation preferentially produces single base substitutions as judged from the enhanced fraction of lacI nonsense mutations and the spectrum of sequenced dominant lacI (lacId) and constitutive lacO (lacOc) mutations which were predominantly (69/71) single nucleotide substitutions. The distribution of amber lacI and sequenced lacId mutations revealed that transitions occur more frequently than transversions. A . T----G . C and G . C----A . T transitions were equally frequent and, with one major exception, evenly distributed among numerous sites. Among the transversions, A . T----T . A events were the most common, A . T----C . G substitutions were rare, and G . C----C . G changes were not detected. Transversions were unequally distributed among a limited number of sites with obvious hotspots. All 11 sequenced transversions had a consensus neighboring sequence of 5'-C-C-(mutated G or A)-C-3'. Although no large deletions or complex mutational events were recovered, sequencing revealed that mutD5 induced single nucleotide deletions within consecutive G X C sequences. An extraordinary A . T----G . C transition hotspot occurred at nucleotide position +6 in the lac operator region; the mutD5 mutation frequency of this single base pair was calculated to be 1.2 X 10(-3).

摘要

大肠杆菌的mutD(dnaQ)基因编码DNA聚合酶III全酶的ε亚基,该亚基参与3'→5'核酸外切酶校对活性。我们确定了大肠杆菌lacI基因中突变等位基因mutD5的突变特异性。从lacI无义突变增加的比例以及测序的显性lacI(lacId)和组成型lacO(lacOc)突变的谱来看,mutD5突变优先产生单碱基替换,这些突变主要(69/71)是单核苷酸替换。琥珀色lacI突变和测序的lacId突变的分布表明,转换比颠换更频繁发生。A.T→G.C和G.C→A.T转换同样频繁,并且除了一个主要例外,在许多位点均匀分布。在颠换中,A.T→T.A事件最常见,A.T→C.G替换很少见,并且未检测到G.C→C.G变化。颠换在有限数量的位点中分布不均,有明显的热点。所有11个测序的颠换都有一个5'-C-C-(突变的G或A)-C-3'的共有相邻序列。虽然没有检测到大片段缺失或复杂的突变事件,但测序显示mutD5在连续的G×C序列内诱导单核苷酸缺失。在lac操纵子区域的核苷酸位置+6处出现了一个异常的A.T→G.C转换热点;这个单碱基对的mutD5突变频率计算为1.2×10^(-3)。