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Glutathione S-Transferase Interacting with Far-Red Insensitive 219 Is Involved in Phytochrome A-Mediated Signaling in Arabidopsis

机译:谷胱甘肽S-转移酶与远红不敏感219相互作用参与拟南芥中的植物色素A介导的信号传导。

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摘要

Far-red (FR) insensitive 219 (FIN219) was previously shown to be involved in phytochrome A-mediated FR light signaling. To further understand its function and regulatory relation with other light-signaling components, a yeast two-hybrid approach was used to isolate FIN219-interacting partners. Here, we demonstrate that FIN219-interacting protein 1 (FIP1) interacts with FIN219 in vitro and in vivo and is composed of 217 amino acids that belong to the tau class of the large glutathione S-transferase gene family. FIP1 was further shown to have glutathione S-transferase activity. The gain of function and partial loss of function of FIP1 resulted in a hyposensitive hypocotyl phenotype under continuous FR (cFR) light and a delayed flowering phenotype under long-day conditions, which suggests that FIP1 may exist in a complex to function in the regulation of Arabidopsis (Arabidopsis thaliana) development. In addition, FIP1 mRNA was down-regulated in the suppressor of phytochrome A-105 1 mutant and differentially expressed in constitutive photomorphogenic 1-4 (cop1-4) and cop1-5 mutants under cFR. Intriguingly, FIP1 expression was up-regulated in the fin219 mutant under all light conditions, except cFR. Furthermore, promoter activity assays revealed that FIP1 expression was light dependent, mainly associated with vascular tissues, and developmentally regulated. Subcellular localization studies revealed that the β-glucuronidase-FIP1 fusion protein was localized in the nucleus and cytoplasm. Taken together, these data indicate that FIP1 may interact with FIN219 to regulate cell elongation and flowering in response to light.
机译:以前显示远红(FR)不敏感219(FIN219)参与植物色素A介导的FR光信号转导。为了进一步了解其功能和与其他光信号成分的调节关系,使用了酵母双杂交方法来分离与FIN219相互作用的伴侣。在这里,我们证明FIN219相互作用蛋白1(FIP1)在体外和体内与FIN219相互作用,并且由217个氨基酸组成,这些氨基酸属于大谷胱甘肽S-转移酶基因家族的tau类。 FIP1被进一步证明具有谷胱甘肽S-转移酶活性。 FIP1的功能获得和部分功能丧失导致连续FR(cFR)光照下的亚胚性下胚轴表型和在长日照条件下延迟的开花表型,这表明FIP1可能以复合物的形式存在,以调节FIP1的功能。拟南芥(Arabidopsis thaliana)发育。此外,在cFR下,在植物色素A-105 1突变体的抑制剂中FIP1 mRNA下调,并在组成型光形态发生1-4(cop1-4)和cop1-5突变体中差异表达。有趣的是,在除cFR之外的所有光照条件下,fin219突变体中的FIP1表达均上调。此外,启动子活性测定显示FIP1表达是光依赖性的,主要与血管组织有关,并且受发育调控。亚细胞定位研究表明,β-葡萄糖醛酸苷酶-FIP1融合蛋白定位于细胞核和细胞质中。综上所述,这些数据表明FIP1可能与FIN219相互作用,以调节细胞对光的响应和开花。

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