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轮藻中一种传统RAB5 GTP酶CaARA7的分子分析与定位

Molecular Analysis and Localization of CaARA7 a Conventional RAB5 GTPase from Characean Algae.

作者信息

Hoepflinger Marion C, Geretschlaeger Anja, Sommer Aniela, Hoeftberger Margit, Hametner Christina, Ueda Takashi, Foissner Ilse

机构信息

Department of Cell Biology/Plant Physiology, University of Salzburg, Hellbrunnerstrasse 34, 5020, Salzburg, Austria.

出版信息

Traffic. 2015 May;16(5):534-54. doi: 10.1111/tra.12267. Epub 2015 Apr 20.

Abstract

RAB5 GTPases are important regulators of endosomal membrane traffic. Among them Arabidopsis thaliana ARA7/RABF2b is highly conserved and homologues are present in fungal, animal and plant kingdoms. In land plants ARA7 and its homologues are involved in endocytosis and transport towards the vacuole. Here we report on the isolation of an ARA7 homologue (CaARA7/CaRABF2) in the highly evolved characean green alga Chara australis. It encodes a polypeptide of 202 amino acids with a calculated molecular mass of 22.2 kDa and intrinsic GTPase activity. Immunolabelling of internodal cells with a specific antibody reveals CaARA7 epitopes at multivesicular endosomes (MVEs) and at MVE-containing wortmannin (WM) compartments. When transiently expressed in epidermal cells of Nicotiana benthamiana leaves, fluorescently tagged CaARA7 localizes to small organelles (putative MVEs) and WM compartments, and partially colocalizes with AtARA7 and CaARA6, a plant specific RABF1 GTPase. Mutations in membrane anchoring and GTP binding sites alter localization of CaARA7 and affect GTPase activity, respectively. This first detailed study of a conventional RAB5 GTPase in green algae demonstrates that CaARA7 is similar to RAB5 GTPases from land plants and other organisms and shows conserved structure and localization.

摘要

RAB5 GTP酶是内体膜运输的重要调节因子。其中,拟南芥ARA7/RABF2b高度保守,其同源物存在于真菌、动物和植物界。在陆地植物中,ARA7及其同源物参与内吞作用以及向液泡的运输。在此,我们报道了在高度进化的轮藻科绿藻澳大利亚轮藻中分离出一种ARA7同源物(CaARA7/CaRABF2)。它编码一个由202个氨基酸组成的多肽,计算分子量为22.2 kDa,具有内在GTP酶活性。用特异性抗体对节间细胞进行免疫标记,可在多泡内体(MVE)和含MVE的渥曼青霉素(WM)区室中发现CaARA7表位。当在本氏烟草叶片的表皮细胞中瞬时表达时,荧光标记的CaARA7定位于小细胞器(推测为MVE)和WM区室,并与AtARA7和CaARA6(一种植物特异性RABF1 GTP酶)部分共定位。膜锚定和GTP结合位点的突变分别改变了CaARA7的定位并影响GTP酶活性。对绿藻中一种传统RAB5 GTP酶的首次详细研究表明,CaARA7与陆地植物和其他生物的RAB5 GTP酶相似,具有保守的结构和定位。

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