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Rab-A2和Rab-A3小GTP酶在拟南芥中定义了一个反式高尔基体内膜结构域,该结构域对细胞板有重要贡献。

Rab-A2 and Rab-A3 GTPases define a trans-golgi endosomal membrane domain in Arabidopsis that contributes substantially to the cell plate.

作者信息

Chow Cheung-Ming, Neto Hélia, Foucart Camille, Moore Ian

机构信息

Department of Plant Sciences, University of Oxford, Oxford OX1 3RB, United Kingdom.

出版信息

Plant Cell. 2008 Jan;20(1):101-23. doi: 10.1105/tpc.107.052001. Epub 2008 Jan 31.

DOI:10.1105/tpc.107.052001
PMID:18239134
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2254926/
Abstract

The Ypt3/Rab11/Rab25 subfamily of Rab GTPases has expanded greatly in Arabidopsis thaliana, comprising 26 members in six provisional subclasses, Rab-A1 to Rab-A6. We show that the Rab-A2 and Rab-A3 subclasses define a novel post-Golgi membrane domain in Arabidopsis root tips. The Rab-A2/A3 compartment was distinct from but often close to Golgi stacks and prevacuolar compartments and partly overlapped the VHA-a1 trans-Golgi compartment. It was also sensitive to brefeldin A and accumulated FM4-64 before prevacuolar compartments did. Mutations in RAB-A2a that were predicted to stabilize the GDP- or GTP-bound state shifted the location of the protein to the Golgi or plasma membrane, respectively. In mitosis, KNOLLE accumulated principally in the Rab-A2/A3 compartment. During cytokinesis, Rab-A2 and Rab-A3 proteins localized precisely to the growing margins of the cell plate, but VHA-a1, GNOM, and prevacuolar markers were excluded. Inducible expression of dominant-inhibitory mutants of RAB-A2a resulted in enlarged, polynucleate, meristematic cells with cell wall stubs. The Rab-A2/A3 compartment, therefore, is a trans-Golgi compartment that communicates with the plasma membrane and early endosomal system and contributes substantially to the cell plate. Despite the unique features of plant cytokinesis, membrane traffic to the division plane exhibits surprising molecular similarity across eukaryotic kingdoms in its reliance on Ypt3/Rab11/Rab-A GTPases.

摘要

Rab GTPases的Ypt3/Rab11/Rab25亚家族在拟南芥中大幅扩张,由六个临时亚类(Rab-A1至Rab-A6)中的26个成员组成。我们发现Rab-A2和Rab-A3亚类在拟南芥根尖中定义了一个新的高尔基体后膜区室。Rab-A2/A3区室与高尔基体堆叠和液泡前区室不同但通常靠近,并且部分与VHA-a1反式高尔基体区室重叠。它对布雷菲德菌素A敏感,并且在液泡前区室之前积累FM4-64。预测可稳定结合GDP或GTP状态的RAB-A2a突变分别将蛋白质的位置转移至高尔基体或质膜。在有丝分裂过程中,KNOLLE主要积累在Rab-A2/A3区室中。在胞质分裂期间,Rab-A2和Rab-A3蛋白精确地定位于细胞板的生长边缘,但VHA-a1、GNOM和液泡前标记物被排除在外。RAB-A2a显性抑制突变体的诱导表达导致分生组织细胞增大、多核且带有细胞壁残端。因此,Rab-A2/A3区室是一个反式高尔基体区室,它与质膜和早期内体系统通讯,并对细胞板有重要贡献。尽管植物胞质分裂具有独特特征,但在依赖Ypt3/Rab11/Rab-A GTPases方面,向分裂平面的膜运输在真核生物界中表现出惊人的分子相似性。

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