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首页> 外文期刊>Nucleic Acids Research >Genetic analysis of the Replication Protein A large subunit family in Arabidopsis reveals unique and overlapping roles in DNA repair, meiosis and DNA replication
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Genetic analysis of the Replication Protein A large subunit family in Arabidopsis reveals unique and overlapping roles in DNA repair, meiosis and DNA replication

机译:复制蛋白的遗传分析拟南芥中一个大的亚基家族揭示了在DNA修复,减数分裂和DNA复制中的独特且重叠的作用

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Replication Protein A (RPA) is a heterotrimeric protein complex that binds single-stranded DNA. In plants, multiple genes encode the three RPA subunits (RPA1, RPA2 and RPA3), including five RPA1-like genes in Arabidopsis. Phylogenetic analysis suggests two distinct groups composed of RPA1A, RPA1C, RPA1E (ACE group) and RPA1B, RPA1D (BD group). ACE-group members are transcriptionally induced by ionizing radiation, while BD-group members show higher basal transcription and are not induced by ionizing radiation. Analysis of rpa1 T-DNA insertion mutants demonstrates that although each mutant line is likely null, all mutant lines are viable and display normal vegetative growth. The rpa1c and rpa1e single mutants however display hypersensitivity to ionizing radiation, and combination of rpa1c and rpa1e results in additive hypersensitivity to a variety of DNA damaging agents. Combination of the partially sterile rpa1a with rpa1c results in complete sterility, incomplete synapsis and meiotic chromosome fragmentation, suggesting an early role for RPA1C in promoting homologous recombination. Combination of either rpa1c and/or rpa1e with atr revealed additive hypersensitivity phenotypes consistent with each functioning in unique repair pathways. In contrast, rpa1b rpa1d double mutant plants display slow growth and developmental defects under non-damaging conditions. We show these defects in the rpa1b rpa1d mutant are likely the result of defective DNA replication leading to reduction in cell division.
机译:复制蛋白A(RPA)是结合单链DNA的异源三聚体蛋白复合物。在植物中,多个基因编码三个RPA亚基(RPA1,RPA2和RPA3),包括拟南芥中的五个RPA1类基因。系统发育分析表明,由RPA1A,RPA1C,RPA1E(ACE组)和RPA1B,RPA1D(BD组)组成的两个不同的组。 ACE组成员通过电离辐射转录诱导,而BD组成员显示更高的基础转录,而不受电离辐射诱导。 rpa1 T-DNA插入突变体的分析表明,尽管每个突变体品系可能都是无效的,但所有突变体品系都是可行的,并显示出正常的营养生长。但是,rpa1c和rpa1e单个突变体对电离辐射表现出超敏性,并且rpa1c和rpa1e的组合会导致对多种DNA破坏剂的加成超敏性。部分不育的rpa1a与rpa1c的结合会导致完全不育,不完全的突触和减数分裂染色体断裂,这表明RPA1C在促进同源重组中起着早期作用。 rpa1c和/或rpa1e与atr的组合显示了与每种在独特修复途径中起作用的功能相一致的加成超敏反应表型。相比之下,rpa1b rpa1d双突变植物在非破坏性条件下显示出缓慢的生长和发育缺陷。我们显示rpa1b rpa1d突变体中的这些缺陷可能是DNA复制缺陷导致细胞分裂减少的结果。

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