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AtPDCD5 Plays a Role in Programmed Cell Death after UV-B Exposure in Arabidopsis

机译:AtPDCD5在拟南芥中UV-B暴露后在程序性细胞死亡中发挥作用

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DNA damage responses have evolved to sense and react to DNA damage; the induction of DNA repair mechanisms can lead to genomic restoration or, if the damaged DNA cannot be adequately repaired, to the execution of a cell death program. In this work, we investigated the role of an Arabidopsis (Arabidopsis thaliana) protein, AtPDCD5, which is highly similar to the human PDCD5 protein; it is induced by ultraviolet (UV)-B radiation and participates in programmed cell death in the UV-B DNA damage response. Transgenic plants expressing AtPDCD5 fused to GREEN FLUORESCENT PROTEIN indicate that AtPDCD5 is localized both in the nucleus and the cytosol. By use of pdcd5 mutants, we here demonstrate that these plants have an altered antioxidant metabolism and accumulate higher levels of DNA damage after UV-B exposure, similar to levels in ham1ham2 RNA interference transgenic lines with decreased expression of acetyltransferases from the MYST family. By coimmunoprecipitation and pull-down assays, we provide evidence that AtPDCD5 interacts with HAM proteins, suggesting that both proteins participate in the same pathway of DNA damage responses. Plants overexpressing AtPDCD5 show less DNA damage but more cell death in root tips upon UV-B exposure. Finally, we here show that AtPDCD5 also participates in age-induced programmed cell death. Together, the data presented here demonstrate that AtPDCD5 plays an important role during DNA damage responses induced by UV-B radiation in Arabidopsis and also participates in programmed cell death programs.
机译:DNA损伤反应已经发展到可以感知DNA损伤并对其做出反应。 DNA修复机制的诱导可以导致基因组恢复,或者如果受损的DNA无法得到充分修复,则可以导致执行细胞死亡程序。在这项工作中,我们研究了拟南芥(Atrabidopsis thaliana)蛋白AtPDCD5的作用,该蛋白与人PDCD5蛋白高度相似;它是由紫外线(UV)-B辐射诱导的,并参与紫外线B-DNA损伤反应中的程序性细胞死亡。表达与绿色荧光蛋白融合的AtPDCD5的转基因植物表明AtPDCD5既位于细胞核中,又位于细胞质中。通过使用pdcd5突变体,我们在这里证明了这些植物的抗氧化代谢发生了变化,并且在UV-B暴露后积累了更高水平的DNA损伤,这与ham1ham2 RNA干扰转基因品系中的水平相似,而MYST家族的乙酰转移酶表达却下降了。通过免疫共沉淀和下拉试验,我们提供了AtPDCD5与HAM蛋白相互作用的证据,表明这两种蛋白都参与DNA损伤反应的同一途径。过度表达AtPDCD5的植物在暴露于UV-B后在根尖显示出更少的DNA损伤,但细胞死亡却更多。最后,我们在这里显示AtPDCD5也参与了年龄诱导的程序性细胞死亡。总之,这里提供的数据表明AtPDCD5在拟南芥中由UV-B辐射诱导的DNA损伤反应中起着重要作用,并且还参与了程序性的细胞死亡程序。

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