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DNA脱氨酶单碱基损伤引发减数分裂重组的替代诱导机制

Alternative induction of meiotic recombination from single-base lesions of DNA deaminases.

作者信息

Pauklin Siim, Burkert Julia S, Martin Julie, Osman Fekret, Weller Sandra, Boulton Simon J, Whitby Matthew C, Petersen-Mahrt Svend K

机构信息

INSERM U783, Faculté de Médicine Necker-Enfants Malades, 75730 Paris Cedex 15, France.

出版信息

Genetics. 2009 May;182(1):41-54. doi: 10.1534/genetics.109.101683. Epub 2009 Feb 23.

Abstract

Meiotic recombination enhances genetic diversity as well as ensures proper segregation of homologous chromosomes, requiring Spo11-initiated double-strand breaks (DSBs). DNA deaminases act on regions of single-stranded DNA and deaminate cytosine to uracil (dU). In the immunoglobulin locus, this lesion will initiate point mutations, gene conversion, and DNA recombination. To begin to delineate the effect of induced base lesions on meiosis, we analyzed the effect of expressing DNA deaminases (activation-induced deaminase, AID, and APOBEC3C) in germ cells. We show that meiotic dU:dG lesions can partially rescue a spo11Delta phenotype in yeast and worm. In rec12 Schizosaccharomyces pombe, AID expression increased proper chromosome segregation, thereby enhancing spore viability, and induced low-frequency meiotic crossovers. Expression of AID in the germ cells of Caenorhabditis elegans spo-11 induced meiotic RAD-51 foci formation and chromosomal bivalency and segregation, as well as an increase in viability. RNAi experiments showed that this rescue was dependent on uracil DNA-glycosylase (Ung). Furthermore, unlike ionizing radiation-induced spo-11 rescue, AID expression did not induce large numbers of DSBs during the rescue. This suggests that the products of DNA deamination and base excision repair, such as uracil, an abasic site, or a single-stranded nick, are sufficient to initiate and alter meiotic recombination in uni- and multicellular organisms.

摘要

减数分裂重组增强了遗传多样性,并确保同源染色体的正确分离,这需要Spo11引发的双链断裂(DSB)。DNA脱氨酶作用于单链DNA区域,将胞嘧啶脱氨基为尿嘧啶(dU)。在免疫球蛋白基因座中,这种损伤会引发点突变、基因转换和DNA重组。为了开始描绘诱导碱基损伤对减数分裂的影响,我们分析了在生殖细胞中表达DNA脱氨酶(激活诱导脱氨酶,AID,和载脂蛋白B mRNA编辑酶催化多肽样3C,APOBEC3C)的影响。我们表明,减数分裂的dU:dG损伤可以部分挽救酵母和线虫中的spo11Delta表型。在裂殖酵母rec12中,AID表达增加了染色体的正确分离,从而提高了孢子活力,并诱导了低频减数分裂交叉。在秀丽隐杆线虫spo-11的生殖细胞中表达AID可诱导减数分裂RAD-51焦点形成、染色体二价性和分离,以及活力增加。RNA干扰实验表明,这种挽救依赖于尿嘧啶DNA糖基化酶(Ung)。此外,与电离辐射诱导的spo-11挽救不同,AID表达在挽救过程中不会诱导大量DSB。这表明DNA脱氨和碱基切除修复的产物,如尿嘧啶、无碱基位点或单链切口,足以启动和改变单细胞和多细胞生物体中的减数分裂重组。

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