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Generation and Characterization of a Specific Polyclonal Antibody against Arabidopsis thaliana Phytochrome-Interacting Factor 3

机译:拟南芥植物植物植物相互作用因子3的特定多克隆抗体的产生与表征

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摘要

Phytochrome-interacting factors (PIFs) are a basic helix-loop-helix family of transcriptional regulators that maintain skotomorphogenesis and suppress photomorphogenesis. PIFs are regulated by plant photoreceptors, especially phytochromes. In general, PIFs physically interact with phytochromes, and this interaction induces PIF's phosphorylation and subsequent degradation, contributing to the initiation of photomorphogenic development. Among the eight members of PIF (PIF1 to PIF8) reported in Arabidopsis thaliana, PIF3 is the first discovered member and plays central roles in de-etiolation and chlorophyll biosynthesis. More recently, PIF3 has been also reported to regulate hormone signaling and cold tolerance in plants. Although PIF3 protein shows dynamic behaviors in plants, its study has been limited due to the lack of an authentic PIF3 antibody. In this study, we produced polyclonal antibodies using inclusion bodies and characterized the PIF3 antibody based on specificity and sensitivity. In addition, we investigated PIF3 phosphorylation and degradation during phytochrome-mediated light signaling in plants. Furthermore, we successfully performed in vitro protein-protein interaction and co-immunoprecipitation assays between phytochrome B (phyB) and PIF3 using the antibody. Therefore, we obtained an authentic PIF3 antibody that could be used as a valuable tool to study the multi-faceted functions of PIF3.
机译:光敏色素相互作用因子(PIF)是一个基本的螺旋-环-螺旋转录调节因子家族,维持皮肤形态发生并抑制光形态发生。PIF受植物光感受器,尤其是光敏色素的调节。一般来说,PIF与光敏色素发生物理相互作用,这种相互作用诱导PIF的磷酸化和随后的降解,有助于启动光形态发育。在拟南芥中报道的八个PIF成员(PIF1到PIF8)中,PIF3是第一个被发现的成员,在黄化和叶绿素生物合成中起着核心作用。最近,PIF3还被报道调节植物的激素信号和耐寒性。虽然PIF3蛋白在植物中表现出动态行为,但由于缺乏真正的PIF3抗体,其研究受到限制。在本研究中,我们利用包涵体制备了多克隆抗体,并基于特异性和敏感性对PIF3抗体进行了表征。此外,我们还研究了植物中光敏色素介导的光信号转导过程中PIF3的磷酸化和降解。此外,我们利用该抗体成功地进行了光敏色素B(phyB)和PIF3之间的体外蛋白质相互作用和共免疫沉淀分析。因此,我们获得了一种可靠的PIF3抗体,可以作为研究PIF3多方面功能的有用工具。

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