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首页> 外文期刊>Plant and Cell Physiology >Arabidopsis Replication Protein A 70a is Required for DNA Damage Response and Telomere Length Homeostasis
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Arabidopsis Replication Protein A 70a is Required for DNA Damage Response and Telomere Length Homeostasis

机译:DNA损伤反应和端粒长度稳态需要拟南芥复制蛋白A 70a

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Replication protein A1 (RPA1/RPA70) forms a heterotrimeric complex together with RPA2/RPA32 and RPA3/RPA14 subunits which plays essential roles in various aspects of DNA metabolism including replication, repair, recombination and telomere maintenance. Compared with RPA70 in yeast and mammals, limited information is available about the factor in plants. In this study, we analyzed the functions of AtRPA70a, which is most similar to human RPA70 among four paralogs in Arabidopsis thaliana. RNA blot analysis showed that AtRPA70a is expressed ubiquitously in plant organs containing differentiated and meristematic tissues, while its expression was up-regulated in response to DNA damage stress. Yeast two-hybrid and co-immunoprecipitation analyses showed that AtRPA70a interacted preferentially with Arabidopsis RPA32a, one of two paralogs. Inactivation of AtRPA70a by T-DNA insertion did not affect growth under normal conditions, but resulted in increased sensitivity to genotoxic agents such as methylmethane sulfonate, bleomycin and hydroxyurea. Terminal restriction fragment analysis revealed that telomere lengths in an AtRPA70a-deficient line were significantly larger than in the wild type, whereas those in the mutant expressing antisense AtTERT (telomerase catalytic subunit gene) were shortened during successive generations. These results demonstrate that AtRPA70a is involved in repair of double-strand DNA breaks and possibly contributes to telomerase-dependent telomere length regulation.
机译:复制蛋白A1(RPA1 / RPA70)与RPA2 / RPA32和RPA3 / RPA14亚基一起形成异源三聚体复合物,在DNA代谢的各个方面(包括复制,修复,重组和端粒维持)起着重要作用。与酵母和哺乳动物中的RPA70相比,关于植物中该因子的信息有限。在这项研究中,我们分析了AtRPA70a的功能,该功能与拟南芥的四个旁系同源物中的人类RPA70最相似。 RNA印迹分析表明,AtRPA70a在含有分化和分生组织的植物器官中普遍表达,而其表达则响应DNA损伤胁迫而上调。酵母两杂交和共免疫沉淀分析表明,AtRPA70a与拟南芥RPA32a(两个旁系同源基因之一)优先相互作用。在正常条件下,通过T-DNA插入使AtRPA70a失活不会影响生长,但会导致对遗传毒性剂(如甲磺酸甲酯,博来霉素和羟基脲)的敏感性增加。末端限制性片段分析显示,AtRPA70a缺陷系中的端粒长度显着大于野生型,而表达反义AtTERT(端粒酶催化亚基基因)的突变体在随后的世代中缩短了端粒长度。这些结果表明AtRPA70a参与双链DNA断裂的修复,并可能有助于端粒酶依赖性端粒长度调节。

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