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OsAGAP, an ARF-GAP from rice, regulates root development mediated by auxin in Arabidopsis.OsAGAP是一种来自水稻的ARF-GAP,它在拟南芥中调节由生长素介导的根系发育。
Plant Cell Environ. 2005 Feb;28(2):147-56. doi: 10.1111/j.1365-3040.2004.01253.x.
2
VAN3 ARF-GAP-mediated vesicle transport is involved in leaf vascular network formation.VAN3 ARF-GAP介导的囊泡运输参与叶片维管网络形成。
Development. 2005 Apr;132(7):1699-711. doi: 10.1242/dev.01716. Epub 2005 Mar 2.
3
Dissection of Arabidopsis ADP-RIBOSYLATION FACTOR 1 function in epidermal cell polarity.拟南芥ADP核糖基化因子1在表皮细胞极性中的功能剖析。
Plant Cell. 2005 Feb;17(2):525-36. doi: 10.1105/tpc.104.028449. Epub 2005 Jan 19.
4
ROP/RAC GTPase: an old new master regulator for plant signaling.ROP/RAC 小 G 蛋白:植物信号传导中一个古老的新主调控因子。
Curr Opin Plant Biol. 2004 Oct;7(5):527-36. doi: 10.1016/j.pbi.2004.07.006.
5
The Arabidopsis Rab GTPase RabA4b localizes to the tips of growing root hair cells.拟南芥Rab GTPase RabA4b定位于正在生长的根毛细胞的尖端。
Plant Cell. 2004 Jun;16(6):1589-603. doi: 10.1105/tpc.021634. Epub 2004 May 21.
6
Maize ROP2 GTPase provides a competitive advantage to the male gametophyte.玉米ROP2 GTP酶为雄配子体提供竞争优势。
Genetics. 2003 Dec;165(4):2137-51. doi: 10.1093/genetics/165.4.2137.
7
Analysis of the small GTPase gene superfamily of Arabidopsis.拟南芥小GTPase基因超家族分析
Plant Physiol. 2003 Mar;131(3):1191-208. doi: 10.1104/pp.013052.
8
Arf1 GTPase plays roles in the protein traffic between the endoplasmic reticulum and the Golgi apparatus in tobacco and Arabidopsis cultured cells.Arf1 GTP酶在烟草和拟南芥培养细胞的内质网与高尔基体之间的蛋白质运输过程中发挥作用。
Plant J. 2002 Aug;31(4):499-515. doi: 10.1046/j.1365-313x.2002.01372.x.
9
ADP-ribosylation factor 1 of Arabidopsis plays a critical role in intracellular trafficking and maintenance of endoplasmic reticulum morphology in Arabidopsis.拟南芥的ADP核糖基化因子1在拟南芥的细胞内运输和内质网形态维持中起关键作用。
Plant Physiol. 2002 Aug;129(4):1507-20. doi: 10.1104/pp.003624.
10
Rab2 GTPase regulates vesicle trafficking between the endoplasmic reticulum and the Golgi bodies and is important to pollen tube growth.Rab2 GTP酶调节内质网和高尔基体之间的囊泡运输,对花粉管生长很重要。
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RPA是一种II类ARFGAP蛋白,可激活ARF1和U5,并在拟南芥的根毛发育中发挥作用。

RPA, a class II ARFGAP protein, activates ARF1 and U5 and plays a role in root hair development in Arabidopsis.

作者信息

Song Xiu-Fen, Yang Chun-Ying, Liu Jie, Yang Wei-Cai

机构信息

Key Laboratory of Molecular and Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Plant Physiol. 2006 Jul;141(3):966-76. doi: 10.1104/pp.106.077818. Epub 2006 May 26.

DOI:10.1104/pp.106.077818
PMID:16731582
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1489917/
Abstract

The polar growth of plant cells depends on the secretion of a large amount of membrane and cell wall materials at the growing tip to sustain rapid growth. Small GTP-binding proteins, such as Rho-related GTPases from plants and ADP-ribosylation factors (ARFs), have been shown to play important roles in polar growth via regulating intracellular membrane trafficking. To investigate the role of membrane trafficking in plant development, a Dissociation insertion line that disrupted a putative ARF GTPase-activating protein (ARFGAP) gene, AT2G35210, was identified in Arabidopsis (Arabidopsis thaliana). Phenotypic analysis showed that the mutant seedlings developed isotropically expanded, short, and branched root hairs. Pollen germination in vitro indicated that the pollen tube growth rate was slightly affected in the mutant. AT2G35210 is specifically expressed in roots, pollen grains, and pollen tubes; therefore, it is designated as ROOT AND POLLEN ARFGAP (RPA). RPA encodes a protein with an N-terminal ARFGAP domain. Subcellular localization experiments showed that RPA is localized at the Golgi complexes via its 79 C-terminal amino acids. We further showed that RPA possesses ARF GTPase-activating activity and specifically activates Arabidopsis ARF1 and ARF1-like protein U5 in vitro. Furthermore, RPA complemented Saccharomyces cerevisiae glo3Delta gcs1Delta double mutant, which suggested that RPA functions as an ARFGAP during vesicle transport between the Golgi and the endoplasmic reticulum. Together, we demonstrated that RPA plays a role in root hair and pollen tube growth, most likely through the regulation of Arabidopsis ARF1 and ARF1-like protein U5 activity.

摘要

植物细胞的极性生长依赖于在生长顶端分泌大量的膜和细胞壁物质,以维持快速生长。小GTP结合蛋白,如植物中的Rho相关GTP酶和ADP核糖基化因子(ARF),已被证明通过调节细胞内膜运输在极性生长中发挥重要作用。为了研究膜运输在植物发育中的作用,在拟南芥中鉴定出一个破坏推定的ARF GTP酶激活蛋白(ARFGAP)基因AT2G35210的解离插入系。表型分析表明,突变体幼苗的根毛发育为各向同性扩展、短且分支。体外花粉萌发表明,突变体中的花粉管生长速率受到轻微影响。AT2G35210在根、花粉粒和花粉管中特异性表达;因此,它被命名为根和花粉ARFGAP(RPA)。RPA编码一种具有N端ARFGAP结构域的蛋白质。亚细胞定位实验表明,RPA通过其79个C端氨基酸定位于高尔基体复合体。我们进一步表明,RPA具有ARF GTP酶激活活性,并在体外特异性激活拟南芥ARF1和ARF1样蛋白U5。此外,RPA补充了酿酒酵母glo3Delta gcs1Delta双突变体,这表明RPA在高尔基体和内质网之间的囊泡运输过程中作为ARFGAP发挥作用。总之,我们证明RPA在根毛和花粉管生长中起作用,最有可能是通过调节拟南芥ARF1和ARF1样蛋白U5的活性。