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拟南芥的 KEEP ON GOING 蛋白将增强的疾病抗性 1 蛋白募集到转高尔基网络/早期内体小泡中。

The KEEP ON GOING protein of Arabidopsis recruits the ENHANCED DISEASE RESISTANCE1 protein to trans-Golgi network/early endosome vesicles.

机构信息

Department of Biology, Indiana University, Bloomington, Indiana 47405-7107, USA.

出版信息

Plant Physiol. 2011 Apr;155(4):1827-38. doi: 10.1104/pp.110.171785. Epub 2011 Feb 22.

Abstract

Loss-of-function mutations in the Arabidopsis (Arabidopsis thaliana) ENHANCED DISEASE RESISTANCE1 (EDR1) gene confer enhanced resistance to powdery mildew infection, enhanced senescence, and enhanced programmed cell death under both abiotic and biotic stress conditions. All edr1-mediated phenotypes can be suppressed by a specific missense mutation (keg-4) in the KEEP ON GOING (KEG) gene, which encodes a multidomain protein that includes a RING E3 ligase domain, a kinase domain, ankyrin repeats, and HERC2-like (for HECT and RCC1-like) repeats. The molecular and cellular mechanisms underlying this suppression are poorly understood. Using confocal laser scanning microscopy and fluorescent protein fusions, we determined that KEG localizes to trans-Golgi network/early endosome (TGN/EE) vesicles. Both the keg-4 mutation, which is located in the carboxyl-terminal HERC2-like repeats, and deletion of the entire HERC2-like repeats reduced endosomal localization of KEG and increased localization to the endoplasmic reticulum and cytosol, indicating that the HERC2-like repeats facilitate the TGN/EE targeting of KEG. EDR1 colocalized with KEG to the TGN/EE when coexpressed but localized primarily to the endoplasmic reticulum when expressed alone. Yeast two-hybrid and coimmunoprecipitation analyses revealed that EDR1 and KEG physically interact. Deletion of the HERC2-like repeats abolished the interaction between KEG and EDR1 as well as the KEG-induced TGN/EE localization of EDR1, indicating that the recruitment of EDR1 to the TGN/EE is based on a direct interaction between EDR1 and KEG mediated by the HERC2-like repeats. Collectively, these data suggest that EDR1 and KEG function together to regulate endocytic trafficking and/or the formation of signaling complexes on TGN/EE vesicles during stress responses.

摘要

拟南芥(Arabidopsis thaliana)增强疾病抗性 1(EDR1)基因中的功能丧失突变赋予对白粉病感染的增强抗性、增强的衰老和在非生物和生物胁迫条件下的程序性细胞死亡。KEG 基因中的特定错义突变(keg-4)可以抑制所有 edr1 介导的表型,KEG 基因编码一种包含 RING E3 连接酶结构域、激酶结构域、锚蛋白重复和 HERC2 样(用于 HECT 和 RCC1 样)重复的多功能蛋白。这种抑制的分子和细胞机制知之甚少。使用共焦激光扫描显微镜和荧光蛋白融合,我们确定 KEG 定位于转高尔基网络/早期内体(TGN/EE)囊泡。位于羧基末端 HERC2 样重复中的 keg-4 突变和整个 HERC2 样重复缺失均减少了 KEG 的内体定位并增加了其向内质网和细胞质的定位,表明 HERC2 样重复促进了 KEG 的 TGN/EE 靶向。当共表达时,EDR1 与 KEG 共定位到 TGN/EE,但单独表达时主要定位于内质网。酵母双杂交和共免疫沉淀分析显示 EDR1 和 KEG 发生物理相互作用。HERC2 样重复缺失消除了 KEG 和 EDR1 之间的相互作用以及 KEG 诱导的 EDR1 TGN/EE 定位,表明 EDR1 被募集到 TGN/EE 是基于 EDR1 和 KEG 之间通过 HERC2 样重复介导的直接相互作用。总之,这些数据表明 EDR1 和 KEG 一起共同作用以调节应激反应过程中内体运输和/或 TGN/EE 囊泡上信号复合物的形成。

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