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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Extrachromosomal unequal homologous recombination and gene conversion in simian kidney cells: effects of UV damage.
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Extrachromosomal unequal homologous recombination and gene conversion in simian kidney cells: effects of UV damage.

机译:猿猴肾细胞中的染色体外不等同源重组和基因转化:紫外线损伤的影响。

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摘要

Shuttle plasmid vectors containing the SV40 origin of replication and tandem neo genes with distally placed non-overlapping deletions were used to study the effects of DNA damage on extrachromosomal homologous recombination in simian kidney cells. DNA was introduced into COS7 cells by a lipofectin-mediated transfection procedure and recombination was assessed by analyzing the structure of plasmids. Recombinational events observed included unequal homologous recombination (triplication), gene conversion, double reciprocal recombination, deletion (pop-outs), gene amplification (4-6 copies), and multimerization. Triplication, an event that previously had not been reported in association with extrachromosomal recombination, predominated in experiments with undamaged vectors. The recombination frequency (NeoR/AmpR) of vectors randomly damaged by UV irradiation was essentially unchanged; however, the relative number of triplication events decreased significantly. Selective damage in one of the two neo genes increased the relative frequency of gene conversion. The experimental system developed for use in this study detects all major homologous recombination events observed in chromosomal direct repeat sequences in mammalian cells and yeast and should prove valuable for future studies of homologous recombination in mammalian cells.
机译:穿梭质粒载体包含SV40复制起点和串联的neo基因,其远端放置有非重叠缺失,用于研究DNA损伤对猿猴肾细胞染色体外同源重组的影响。通过脂质转染介导的转染程序将DNA导入COS7细胞,并通过分析质粒的结构来评估重组。观察到的重组事件包括不相等的同源重组(三倍),基因转化,双重相互重组,缺失(弹出),基因扩增(4-6拷贝)和多聚。三倍体是一种以前没有报道过的与染色体外重组有关的事件,在未受损载体的实验中占主导地位。被紫外线照射随机破坏的载体的重组频率(NeoR / AmpR)基本不变;但是,三次重复事件的相对数量显着减少。两个新基因之一的选择性损伤增加了基因转化的相对频率。开发用于本研究的实验系统可检测出哺乳动物细胞和酵母中染色体直接重复序列中观察到的所有主要同源重组事件,并且对于今后在哺乳动物细胞中进行同源重组的研究应具有重要的价值。

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