首页> 外文期刊>Nucleic Acids Research >Sequence homology and microhomology dominate chromosomal double-strand break repair in African trypanosomes.
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Sequence homology and microhomology dominate chromosomal double-strand break repair in African trypanosomes.

机译:序列同源性和微同源性主导非洲锥虫的染色体双链断裂修复。

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摘要

Genetic diversity in fungi and mammals is generated through mitotic double-strand break-repair (DSBR), typically involving homologous recombination (HR) or non-homologous end joining (NHEJ). Microhomology-mediated joining appears to serve a subsidiary function. The African trypanosome, a divergent protozoan parasite, relies upon rearrangement of subtelomeric variant surface glycoprotein (VSG) genes to achieve antigenic variation. Evidence suggests an absence of NHEJ but chromosomal repair remains largely unexplored. We used a system based on I-SceI meganuclease and monitored temporally constrained DSBR at a specific chromosomal site in bloodstream form Trypanosoma brucei. In response to the lesion, adjacent single-stranded DNA was generated; the homologous strand-exchange factor, Rad51, accumulated into foci; a G(2)M checkpoint was activated and >50% of cells displayed successful repair. Quantitative analysis of DSBR pathways employed indicated that inter-chromosomal HR dominated. HR displayed a strongpreference for the allelic template but also the capacity to interact with homologous sequence on heterologous chromosomes. Intra-chromosomal joining was predominantly, and possibly exclusively, microhomology mediated, a situation unique among organisms examined to date. These DSBR pathways available to T. brucei likely underlie patterns of antigenic variation and the evolution of the vast VSG gene family.
机译:真菌和哺乳动物的遗传多样性是通过有丝分裂双链断裂修复(DSBR)产生的,通常涉及同源重组(HR)或非同源末端连接(NHEJ)。微同源性介导的连接似乎起辅助作用。非洲锥虫,一种原生动物的不同寄生虫,依赖于亚端变体表面糖蛋白(VSG)基因的重排来实现抗原变异。有证据表明不存在NHEJ,但染色体修复仍未开发。我们使用了基于I-SceI大范围核酸酶的系统,并在布鲁氏锥虫血流中的特定染色体部位监测了时间受限的DSBR。响应病变,产生相邻的单链DNA。同源链交换因子Rad51积累到病灶中; G(2)M检查点被激活,> 50%的细胞显示修复成功。对DSBR途径的定量分析表明,染色体间HR占主导地位。 HR显示出对等位基因模板的强烈偏爱,但也具有与异源染色体上的同源序列相互作用的能力。染色体内连接主要是(可能是唯一地)由微同源学介导的,这种情况是迄今为止所检查的生物体中唯一的。这些可用于布鲁氏菌的DSBR途径可能是抗原变异和广大的VSG基因家族进化的基础。

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