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NEVERSHED ARF-GAP蛋白对膜运输和细胞器分离的调控

Regulation of membrane trafficking and organ separation by the NEVERSHED ARF-GAP protein.

作者信息

Liljegren Sarah J, Leslie Michelle E, Darnielle Lalitree, Lewis Michael W, Taylor Sarah M, Luo Ruibai, Geldner Niko, Chory Joanne, Randazzo Paul A, Yanofsky Martin F, Ecker Joseph R

机构信息

Department of Biology and Molecular Biology, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

Development. 2009 Jun;136(11):1909-18. doi: 10.1242/dev.033605.

Abstract

Cell separation, or abscission, is a highly specialized process in plants that facilitates remodeling of their architecture and reproductive success. Because few genes are known to be essential for organ abscission, we conducted a screen for mutations that alter floral organ shedding in Arabidopsis. Nine recessive mutations that block shedding were found to disrupt the function of an ADP-ribosylation factor-GTPase-activating protein (ARF-GAP) we have named NEVERSHED (NEV). As predicted by its homology to the yeast Age2 ARF-GAP and transcriptional profile, NEV influences other aspects of plant development, including fruit growth. Co-localization experiments carried out with NEV-specific antiserum and a set of plant endomembrane markers revealed that NEV localizes to the trans-Golgi network and endosomes in Arabidopsis root epidermal cells. Interestingly, transmission electron micrographs of abscission zone regions from wild-type and nev flowers reveal defects in the structure of the Golgi apparatus and extensive accumulation of vesicles adjacent to the cell walls. Our results suggest that NEV ARF-GAP activity at the trans-Golgi network and distinct endosomal compartments is required for the proper trafficking of cargo molecules required for cell separation.

摘要

细胞分离,即脱落,是植物中一个高度专业化的过程,有助于其结构重塑和繁殖成功。由于已知很少有基因对器官脱落至关重要,我们对拟南芥中改变花器官脱落的突变进行了筛选。发现九个阻止脱落的隐性突变破坏了一种我们命名为NEVERSHED(NEV)的ADP核糖基化因子-鸟苷三磷酸酶激活蛋白(ARF-GAP)的功能。正如根据其与酵母Age2 ARF-GAP的同源性及其转录谱所预测的那样,NEV影响植物发育的其他方面,包括果实生长。用NEV特异性抗血清和一组植物内膜标记物进行的共定位实验表明,NEV定位于拟南芥根表皮细胞中的反式高尔基体网络和内体。有趣的是,野生型和nev花的脱落区区域的透射电子显微镜图像显示高尔基体结构存在缺陷,并且细胞壁附近有大量囊泡积累。我们的结果表明,反式高尔基体网络和不同内体区室中的NEV ARF-GAP活性是细胞分离所需货物分子正确运输所必需的。

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