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2
Multiple pathways of deletion formation in Escherichia coli.大肠杆菌中缺失形成的多种途径。
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The DNA gyrase of Escherichia coli participates in the formation of a spontaneous deletion by recA-independent recombination in vivo.大肠杆菌的DNA促旋酶在体内通过不依赖recA的重组参与自发缺失的形成。
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4
Asymmetric crossing over in the spontaneous formation of large deletions in the tonB-trp region of the Escherichia coli K-12 chromosome.大肠杆菌K-12染色体tonB-trp区域大缺失自发形成过程中的不对称交换
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Recombination genes on the Escherichia coli sex factor specific for transposable elements.大肠杆菌性因子上对转座元件特异的重组基因。
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10
Transcription, topoisomerases and recombination.转录、拓扑异构酶与重组
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本文引用的文献

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Plasmid screening at high colony density.高菌落密度下的质粒筛选
Gene. 1980 Jun;10(1):63-7. doi: 10.1016/0378-1119(80)90144-4.
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The structure and evolution of the human beta-globin gene family.人类β-珠蛋白基因家族的结构与进化
Cell. 1980 Oct;21(3):653-68. doi: 10.1016/0092-8674(80)90429-8.
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Spontaneous tandem genetic duplications in Salmonella typhimurium arise by unequal recombination between rRNA (rrn) cistrons.鼠伤寒沙门氏菌中的自发串联基因重复通过rRNA(rrn)顺反子之间的不等交换产生。
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Oligonucleotide-directed mutagenesis using M13-derived vectors: an efficient and general procedure for the production of point mutations in any fragment of DNA.使用M13衍生载体的寡核苷酸定向诱变:在任何DNA片段中产生点突变的高效通用方法。
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DNA sequence studies of simian virus 40 chromosomal excision and integration in rat cells.猴病毒40在大鼠细胞中染色体切除与整合的DNA序列研究。
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Unusual alleles of recB and recC stimulate excision of inverted repeat transposons Tn10 and Tn5.recB和recC的异常等位基因刺激反向重复转座子Tn10和Tn5的切除。
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Homology is not required for recombination mediated by DNA gyrase of Escherichia coli.大肠杆菌DNA促旋酶介导的重组不需要同源性。
Mol Gen Genet. 1984;193(2):238-43. doi: 10.1007/BF00330674.
8
Recombination between short direct repeats in a recA host.recA宿主中短直接重复序列之间的重组。
Mol Gen Genet. 1982;188(3):486-9. doi: 10.1007/BF00330053.
9
On the formation of spontaneous deletions: the importance of short sequence homologies in the generation of large deletions.关于自发缺失的形成:短序列同源性在大缺失产生中的重要性。
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10
rII cistrons of bacteriophage T4. DNA sequence around the intercistronic divide and positions of genetic landmarks.噬菌体T4的rII顺反子。顺反子间分隔区周围的DNA序列及遗传标记的位置。
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具有改变的缺失形成速率的大肠杆菌突变体的分离与鉴定。

Isolation and characterization of Escherichia coli mutants with altered rates of deletion formation.

作者信息

Whoriskey S K, Schofield M A, Miller J H

机构信息

Department of Biology, University of California, Los Angeles 90024.

出版信息

Genetics. 1991 Jan;127(1):21-30. doi: 10.1093/genetics/127.1.21.

DOI:10.1093/genetics/127.1.21
PMID:2016043
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1204306/
Abstract

Using site-specific mutagenesis in vitro we constructed a genetic system to detect mutants with altered rates of deletion formation between short repeated sequences in Escherichia coli. After in vivo mutagenesis with chemical mutagens and transposons, the system allowed the identification of mutants with either increased or decreased deletion frequencies. One mutational locus, termed mutR, that results in an increase in deletion formation, was studied in detail. The mutR gene maps at 38.5 min on the E. coli genetic map. Since the precise excision of many transposable elements is also mediated at short repeated sequences, we investigated the effects of the mutant alleles, as well as recA, on precise excision of the transposon Tn9. Neither mutR nor recA affect precise excision of the transposon Tn9, from three different insertions in lacI, whereas these alleles do affect other spontaneous deletions in the same system. These results indicate that deletion events leading to precise excision occur principally via a different pathway than other random spontaneous deletions. It is suggested that, whereas precise excision occurs predominantly via a pathway involving replication enzymes (for instance template strand slippage), deletions on an F'factor are stimulated by recombination enzymes.

摘要

我们利用体外位点特异性诱变构建了一个遗传系统,用于检测大肠杆菌中短重复序列间缺失形成速率发生改变的突变体。在用化学诱变剂和转座子进行体内诱变后,该系统能够鉴定出缺失频率增加或降低的突变体。我们对一个导致缺失形成增加的突变位点mutR进行了详细研究。mutR基因位于大肠杆菌遗传图谱的38.5分钟处。由于许多转座元件的精确切除也是在短重复序列处介导的,我们研究了突变等位基因以及recA对转座子Tn9精确切除的影响。mutR和recA均不影响Tn9从lacI中三个不同插入位点的精确切除,而这些等位基因确实会影响同一系统中的其他自发缺失。这些结果表明,导致精确切除的缺失事件主要通过与其他随机自发缺失不同的途径发生。有人提出,精确切除主要通过涉及复制酶的途径发生(例如模板链滑动),而F'因子上的缺失则受到重组酶的刺激。