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首页> 外文期刊>BMC Molecular Biology >RAD51 paralogs promote homology-directed repair at diversifying immunoglobulin V regions
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RAD51 paralogs promote homology-directed repair at diversifying immunoglobulin V regions

机译:RAD51旁系同源基因促进免疫球蛋白V区多样化的同源性修复

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Background Gene conversion depends upon the same factors that carry out more general process of homologous recombination, including homologous gene targeting and recombinational repair. Among these are the RAD51 paralogs, conserved factors related to the key recombination factor, RAD51. In chicken and other fowl, gene conversion (templated mutation) diversifies immunoglobulin variable region sequences. This allows gene conversion and recombinational repair to be studied using the chicken DT40 B cell line, which carries out constitutive gene conversion and provides a robust and physiological model for homology-directed repair in vertebrate cells.Results We show that DT40 contains constitutive nuclear foci of the repair factors RAD51D and XRCC2, consistent with activated homologous recombination. Single-cell imaging of a DT40 derivative in which the rearranged and diversifying immunoglobulin λ_R light chain gene is tagged with polymerized lactose operator, DT40 PolyLacO-λ_R, showed that RAD51D and XRCC2 localize to the diversifying λ_R gene. Colocalizations correlate both functionally and physically with active immunoglobulin gene conversion. Ectopic expression of either RAD51D or XRCC2 accelerated the clonal rate of gene conversion, and conversion tracts were significantly longer in RAD51D than XRCC2 transfectants.Conclusion These results demonstrate direct functions of RAD51D and XRCC2 in immunoglobulin gene conversion, and also suggest that modulation of levels of repair factors may be a useful strategy to promote gene correction in other cell types.
机译:背景基因转化取决于进行更普遍的同源重组过程的相同因素,包括同源基因靶向和重组修复。其中有RAD51旁系同源物,与关键重组因子RAD51相关的保守因子。在鸡和其他家禽中,基因转换(模板突变)使免疫球蛋白可变区序列多样化。这使得可以利用鸡DT40 B细胞系研究基因转化和重组修复,该鸡DT40 B细胞系进行组成性基因转化,并为脊椎动物细胞中的同源性定向修复提供了鲁棒的生理模型。修复因子RAD51D和XRCC2,与激活的同源重组一致。用聚合的乳糖操纵子DT40PolyLacO-λ_R标记重排和多样化的免疫球蛋白λ_R轻链基因的DT40衍生物的单细胞成像显示,RAD51D和XRCC2定位于多样化的λ_R基因。共定位在功能上和物理上都与主动免疫球蛋白基因转化相关。 RAD51D或XRCC2的异位表达加快了基因转化的克隆速度,并且RAD51D的转化途径比XRCC2转染子长得多。修复因子可能是促进其他细胞类型中基因校正的有用策略。

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