Suppr超能文献

噬菌体T4中DNA双链断裂诱导的基因重组:左右偏向性的本质

Genetic recombination induced by DNA double-strand break in bacteriophage T4: nature of the left/right bias.

作者信息

Shcherbakov Victor P, Shcherbakova Tamara, Plugina Lidiya, Sizova Svetlana, Kudryashova Elena, Granovsky Igor

机构信息

Institute of Problems of Chemical Physics, RAS, Chernogolovka, Moscow Region 142432, Russia.

出版信息

DNA Repair (Amst). 2008 Jun 1;7(6):890-901. doi: 10.1016/j.dnarep.2008.02.012. Epub 2008 Apr 8.

Abstract

The experimental system combining double-strand breaks (DSBs), produced site-specifically by SegC endonuclease, with the famous advantages of the bacteriophage T4 rII mutant recombination analysis was used here to elucidate the origin of the recombination bias on two sides of the DSB, especially pronounced in gene 39 (topoisomerase II) and gene 59 (41-helicase loader) mutants. Three sources were found to contribute to the bias: (1) the SegC endonuclease may remain bound to the end of the broken DNA and thus protect it from exonuclease degradation; (2) in heteroduplex heterozygotes (HHs), arising as the recombinant products in the left-hand crosses, the transcribed strands are of rII mutant phenotype, so they, in contrast to the right-hand HHs, do not produce plaques on the lawn of the lambda-lysogenic host; and (3) the intrinsic polarity of T4 chromosome, reflected in transcription, may be a cause for discrimination of promoter-proximal and promoter-distal DNA sequences. It is shown that the apparent recombination bias does not imply one-sidedness of the DSB repair but just reflects a different depth of the end processing. It is inferred that the cause, underlying the "intrinsic" bias, might be interference between strand exchange and transcription. Topoisomerase and helicase functions are necessary to turn the process in favor of strand exchange. The idea is substantiated that the double-stranded to single-stranded DNA transition edge (not ss-DNA tip) serves as an actual recombinogenic element.

摘要

本研究使用了一种实验系统,该系统将由SegC核酸内切酶特异性产生的双链断裂(DSB)与噬菌体T4 rII突变体重组分析的著名优势相结合,以阐明DSB两侧重组偏向的起源,这种偏向在基因39(拓扑异构酶II)和基因59(41-解旋酶装载蛋白)突变体中尤为明显。发现有三个来源导致了这种偏向:(1)SegC核酸内切酶可能仍与断裂DNA的末端结合,从而保护其免受核酸外切酶降解;(2)在左手交叉中作为重组产物出现的异源双链杂合子(HHs)中,转录链具有rII突变体表型,因此与右手HHs不同,它们在λ溶原性宿主菌苔上不产生噬菌斑;(3)T4染色体在转录中反映出的内在极性可能是区分启动子近端和启动子远端DNA序列的一个原因。结果表明,明显的重组偏向并不意味着DSB修复的单向性,而只是反映了末端加工的不同深度。据推测,“内在”偏向的潜在原因可能是链交换与转录之间的干扰。拓扑异构酶和解旋酶功能对于使过程有利于链交换是必要的。双链到单链DNA转变边缘(而非单链DNA末端)作为实际的重组元件这一观点得到了证实。

相似文献

1
Genetic recombination induced by DNA double-strand break in bacteriophage T4: nature of the left/right bias.
DNA Repair (Amst). 2008 Jun 1;7(6):890-901. doi: 10.1016/j.dnarep.2008.02.012. Epub 2008 Apr 8.
2
Double-strand break repair in bacteriophage T4: coordination of DNA ends and effects of mutations in recombinational genes.
DNA Repair (Amst). 2006 Jul 13;5(7):773-87. doi: 10.1016/j.dnarep.2006.03.007. Epub 2006 May 22.
3
On the mutagenicity of homologous recombination and double-strand break repair in bacteriophage.
DNA Repair (Amst). 2011 Jan 2;10(1):16-23. doi: 10.1016/j.dnarep.2010.09.006. Epub 2010 Oct 15.
4
Double-strand break repair and genetic recombination in topoisomerase and primase mutants of bacteriophage T4.
DNA Repair (Amst). 2014 Sep;21:120-30. doi: 10.1016/j.dnarep.2014.04.009. Epub 2014 May 5.
7
Focused genetic recombination of bacteriophage t4 initiated by double-strand breaks.
Genetics. 2002 Oct;162(2):543-56. doi: 10.1093/genetics/162.2.543.
8
Endonuclease VII is a key component of the mismatch repair mechanism in bacteriophage T4.
DNA Repair (Amst). 2011 Apr 3;10(4):356-62. doi: 10.1016/j.dnarep.2010.12.006. Epub 2011 Jan 14.
9
Double-strand break repair in bacteriophage T4: recombination effects of 3'-5' exonuclease mutations.
Genetics. 2006 Dec;174(4):1729-36. doi: 10.1534/genetics.106.063891. Epub 2006 Oct 8.
10
Recombination-dependent DNA replication stimulated by double-strand breaks in bacteriophage T4.
J Bacteriol. 1995 Dec;177(23):6844-53. doi: 10.1128/jb.177.23.6844-6853.1995.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验