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The RING finger E3 ligase STRF1 is involved in membrane trafficking and modulates salt stress response in Arabidopsis thaliana

机译:RING手指E3连接酶STRF1参与膜运输并调节拟南芥中的盐胁迫响应

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摘要

Salt stress is a detrimental factor for plant growth and development. The response to salt stress has been shown to involve components in the intracellular trafficking system, as well as components of the ubiquitin-proteasome system (UPS). In this article, we have identified in Arabidopsis thaliana a little reported ubiquitin ligase involved in salt stress response, which we named STRF1 (Salt Tolerance RING Finger 1). STRF1 is a member of RING-H2 finger proteins and we demonstrate that it has ubiquitin ligase activity in vitro. We also show that STRF1 localizes mainly at the plasma membrane and at the intracellular endosomes. strf1-1 loss of function mutant seedlings exhibit accelerated endocytosis in roots, and have altered expression of several genes involved in the membrane trafficking system. Moreover, protein trafficking inhibitor, BFA treatment has increased BFA bodies in strf1-1 mutant. This mutant also showed increased tolerance to salt, ionic and osmotic stresses, reduced accumulation of reactive oxygen species during salt stress, and increased expression of AtRbohD, which encodes a NADPH oxidase involved in H2 O2 production. We conclude that STRF1 is a membrane trafficking-related ubiquitin ligase, which helps the plant to respond to salt stress by monitoring intracellular membrane trafficking and ROS production
机译:盐胁迫是植物生长发育的有害因素。已经显示出对盐胁迫的响应涉及细胞内运输系统中的成分,以及遍在蛋白-蛋白酶体系统(UPS)中的成分。在本文中,我们已经在拟南芥中鉴定出了一些报道的参与盐胁迫应答的泛素连接酶,我们将其命名为STRF1(耐盐环指1)。 STRF1是RING-H2指状蛋白的成员,我们证明其在体外具有泛素连接酶活性。我们还显示STRF1主要位于质膜和细胞内内体。 strf1-1功能丧失的突变体幼苗在根部表现出加速的内吞作用,并改变了与膜运输系统有关的几个基因的表达。此外,蛋白质运输抑制剂BFA处理增加了strf1-1突变体中的BFA体。该突变体还显示出对盐,离子和渗透胁迫的耐受性增强,盐胁迫期间活性氧物种的积累减少,以及AtRbohD的表达增加,该AtRbohD编码参与H2 O2生产的NADPH氧化酶。我们得出结论,STRF1是与膜运输有关的泛素连接酶,可通过监测细胞内膜运输和ROS的产生来帮助植物响应盐胁迫。

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