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OsGAP1作为OsRab11介导的从反式高尔基体网络到质膜或液泡运输的正向调节因子发挥作用。

OsGAP1 functions as a positive regulator of OsRab11-mediated TGN to PM or vacuole trafficking.

作者信息

Heo Jae Bok, Rho Hee Sun, Kim Se Won, Hwang Sung Min, Kwon Hyun Jin, Nahm Min Yeop, Bang Woo Young, Bahk Jeong Dong

机构信息

Division of Applied Life Sciences, Graduate School of Gyeongsang National University, Jinju 660-701, Korea.

出版信息

Plant Cell Physiol. 2005 Dec;46(12):2005-18. doi: 10.1093/pcp/pci215. Epub 2005 Oct 17.

Abstract

The Ypt/Rab family of small G-proteins is important in regulating vesicular transport. Rabs hydrolyze GTP very slowly on their own and require GTPase-activating proteins (GAPs). Here we report the identification and characterization of OsGAP1, a Rab-specific rice GAP. OsGAP1 strongly stimulated OsRab8a and OsRab11, which are homologs of the mammalian Rab8 and Rab11 proteins that are essential for Golgi to plasma membrane (PM) and trans-Golgi network (TGN) to PM trafficking, respectively. Substitution of two invariant arginines within the catalytic domain of Oryza sativa GTPase-activating protein 1 (OsGAP1) with alanines significantly inhibited its GAP activity. In vivo targeting experiments revealed that OsGAP1 localizes to the TGN or pre-vacuolar compartment (PVC). A yeast expression system demonstrated that wild-type OsGAP1 facilitates O. sativa dissociation inhibitor 3 (OsGDI3)-catalyzed OsRab11 recycling at an early stage, but the OsGAP1(R385A) and (R450A) mutants do not. Thus, GTP hydrolysis is essential for Rab recycling. Moreover, expression of the OsGAP1 mutants in Arabidopsis protoplasts inhibited the trafficking of some cargo proteins, including the PM-localizing H+-ATPase-green fluorescent protein (GFP) and Ca2+-ATPase8-GFP and the central vacuole-localizing Arabidopsis aleurain-like protein (AALP)-GFP. The OsGAP1 mutants caused these proteins to accumulate at the Golgi apparatus. Surprisingly, OsRab11 overproduction relieved the inhibitory effect of the OsGAP1 mutants on vesicular trafficking. OsRab8a had no such effect. Thus, the OsGAP1 mutants may inhibit TGN to PM or central vacuole trafficking because they induce the sequestration of endogenous Rab11. We propose that OsGAP1 facilitates vesicular trafficking from the TGN to the PM or central vacuole by both stimulating the GTPase activity of OsRab11 and increasing the recycling of inactive OsRab11.

摘要

小G蛋白的Ypt/Rab家族在调节囊泡运输中起重要作用。Rab自身水解GTP的速度非常缓慢,需要GTP酶激活蛋白(GAP)。在此,我们报告了水稻Rab特异性GAP——OsGAP1的鉴定和特性。OsGAP1强烈刺激OsRab8a和OsRab11,它们分别是哺乳动物Rab8和Rab11蛋白的同源物,对高尔基体到质膜(PM)以及反式高尔基体网络(TGN)到质膜的运输至关重要。将水稻GTP酶激活蛋白1(OsGAP1)催化结构域内的两个不变精氨酸用丙氨酸替代,显著抑制了其GAP活性。体内靶向实验表明,OsGAP1定位于TGN或前液泡区室(PVC)。酵母表达系统证明,野生型OsGAP1在早期促进水稻解离抑制剂3(OsGDI3)催化的OsRab11循环利用,但OsGAP1(R385A)和(R450A)突变体则不能。因此,GTP水解对Rab循环利用至关重要。此外,OsGAP1突变体在拟南芥原生质体中的表达抑制了一些货物蛋白的运输,包括定位于质膜的H⁺ - ATP酶 - 绿色荧光蛋白(GFP)和Ca²⁺ - ATP酶8 - GFP以及定位于中央液泡的拟南芥类 aleurain 蛋白(AALP) - GFP。OsGAP1突变体导致这些蛋白在高尔基体积累。令人惊讶的是,OsRab11的过量表达缓解了OsGAP1突变体对囊泡运输的抑制作用。OsRab8a没有这种作用。因此,OsGAP1突变体可能抑制TGN到质膜或中央液泡的运输,因为它们诱导了内源性Rab11的隔离。我们提出,OsGAP1通过刺激OsRab11的GTP酶活性和增加无活性OsRab11的循环利用,促进从TGN到质膜或中央液泡的囊泡运输。

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