首页> 外文期刊>The Plant Cell >ENDOSOMAL RAB EFFECTOR WITH PX-DOMAIN, an Interacting Partner of RAB5 GTPases, Regulates Membrane Trafficking to Protein Storage Vacuoles in Arabidopsis
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ENDOSOMAL RAB EFFECTOR WITH PX-DOMAIN, an Interacting Partner of RAB5 GTPases, Regulates Membrane Trafficking to Protein Storage Vacuoles in Arabidopsis

机译:带有PX-DOMAIN的内膜RAB效应子,RAB5 GTPases的相互作用伙伴,调节膜运输到拟南芥中的蛋白存储液泡。

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摘要

RAB5 GTPases act as molecular switches that regulate various endosomal functions in animal cells, including homotypic fusion of early endosomes, endosomal motility, endosomal signaling, and subcompartmentalization of the endosomal membrane. RAB5 proteins fulfill these diverse functions through interactions with downstream effector molecules. Two canonical RAB5 members, ARA7 and RAB HOMOLOG1 (RHA1), are encoded in the Arabidopsis thaliana genome. ARA7 and RHA1 play crucial roles in endocytic and vacuolar trafficking pathways. Plant RAB5 GTPases function via interactions with effector molecules, whose identities and functions are currently unclear. In this study, we searched for canonical RAB5 effector molecules of Arabidopsis and identified a candidate, which we called ENDOSOMAL RAB EFFECTOR WITH PX-DOMAIN (EREX). The intimate genetic interaction between EREX and RAB5 members, the results from subcellular colocalization experiments, and the direct interaction observed in an in vitro pull-down assay strongly suggest that EREX is a genuine effector of canonical RAB5s in Arabidopsis. We further found that close homologs of EREX play partially redundant functions with EREX in the transport of seed storage proteins. Our results indicate that canonical plant RAB5s acquired distinct effector molecules from those of non-plant systems to fulfill their functions.
机译:RAB5 GTPases充当调节动物细胞中各种内体功能的分子开关,包括早期内体的同型融合,内体运动性,内体信号传导和内体膜亚区室化。 RAB5蛋白通过与下游效应分子的相互作用来实现这些多样化的功能。拟南芥基因组中编码了两个规范的RAB5成员ARA7和RAB HOMOLOG1(RHA1)。 ARA7和RHA1在胞吞和液泡运输途径中起关键作用。植物RAB5 GTPases通过与效应分子相互作用而起作用,目前尚不清楚其身份和功能。在这项研究中,我们搜索拟南芥的典型RAB5效应分子,并确定了一个候选物,我们将其称为带有PX-DOMAIN的ENDOSOMAL RAB效应子(EREX)。 EREX和RAB5成员之间的亲密遗传相互作用,亚细胞共定位实验的结果以及在体外下拉测定法中观察到的直接相互作用强烈表明EREX是拟南芥中经典RAB5的真正效应子。我们进一步发现,EREX的紧密同源物在种子贮藏蛋白的运输中起着EREX的作用。我们的结果表明规范植物RAB5s从非植物系统中获得了独特的效应子分子,以实现其功能。

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