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Activation of the Rab7 GTPase by the MON1-CCZ1 Complex Is Essential for PVC-to-Vacuole Trafficking and Plant Growth in Arabidopsis

机译:MON1-CCZ1复合物激活Rab7 GTP酶对于拟南芥中PVC到气孔的运输和植物生长是必不可少的

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摘要

Rab GTPases serve as multifaceted organizers during vesicle trafficking. Rab7, a member of the Rab GTPase family, has been shown to perform various essential functions in endosome trafficking and in endosome-to-lysosome trafficking in mammalian systems. The Arabidopsis thaliana genome encodes eight putative Rab7 homologs; however, the detailed function and activation mechanism of Rab7 in plants remain unknown. Here, we demonstrate that Arabidopsis RABG3f, a member of the plant Rab7 small GTPase family, localizes to prevacuolar compartments (PVCs) and the tonoplast. The proper activation of Rab7 is essential for both PVC-to-vacuole trafficking and vacuole biogenesis. Expression of a dominant-negative Rab7 mutant (RABG3fT22N) induces the formation of enlarged PVCs and affects vacuole morphology in plant cells. We also identify Arabidopsis MON1 (MONENSIN SENSITIVITY1) and CCZ1 (CALCIUM CAFFEINE ZINC SENSITIVITY1) proteins as a dimeric complex that functions as the Rab7 guanine nucleotide exchange factor. The MON1-CCZ1 complex also serves as the Rab5 effector to mediate Rab5-to-Rab7 conversion on PVCs. Loss of functional MON1 causes the formation of enlarged Rab5-positive PVCs that are separated from Rab7-positive endosomes. Similar to the dominant-negative Rab7 mutant, the mon1 mutants show pleiotropic growth defects, fragmented vacuoles, and altered vacuolar trafficking. Thus, Rab7 activation by the MON1-CCZ1 complex is critical for vacuolar trafficking, vacuole biogenesis, and plant growth.
机译:Rab GTPases在小泡运输过程中充当多方面的组织者。 Rab7是Rab GTPase家族的成员,已显示在哺乳动物系统的内体运输和内体至溶酶体运输中执行各种基本功能。拟南芥基因组编码八个推定的Rab7同源基因。但是,Rab7在植物中的详细功能和激活机制仍然未知。在这里,我们证明了拟南芥RABG3f是植物Rab7小GTPase家族的成员,它位于原虫室(PVC)和液泡膜中。 Rab7的正确激活对于PVC到真空的运输和液泡生物发生都是必不可少的。显性负性Rab7突变体(RABG3f T22N )的表达诱导PVC形成扩大,并影响植物细胞的液泡形态。我们还确定拟南芥MON1(MONENSIN SENSITIVITY1)和CCZ1(钙咖啡因锌灵敏度1)蛋白是作为Rab7鸟嘌呤核苷酸交换因子起作用的二聚体复合物。 MON1-CCZ1复合物还充当Rab5效应子,以介导PVC上Rab5-to-Rab7的转化。功能性MON1的丢失会导致形成与Rab7阳性内体分离的扩大的Rab5阳性PVC。与显性负性Rab7突变体相似,mon1突变体表现出多效性生长缺陷,液泡碎裂和液泡运输改变。因此,MON1-CCZ1复合物激活Rab7对液泡运输,液泡生物发生和植物生长至关重要。

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