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拟南芥WPP结构域蛋白在发育过程中与核膜相关,并促进细胞分裂。

Arabidopsis WPP-domain proteins are developmentally associated with the nuclear envelope and promote cell division.

作者信息

Patel Shalaka, Rose Annkatrin, Meulia Tea, Dixit Ram, Cyr Richard J, Meier Iris

机构信息

Plant Biotechnology Center and Department of Plant Molecular and Cellular Biology, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

Plant Cell. 2004 Dec;16(12):3260-73. doi: 10.1105/tpc.104.026740. Epub 2004 Nov 17.

Abstract

The nuclear envelope (NE) acts as a selective barrier to macromolecule trafficking between the nucleus and the cytoplasm and undergoes a complex reorganization during mitosis. Different eukaryotic kingdoms show specializations in NE function and composition. In contrast with vertebrates, the protein composition of the NE and the function of NE proteins are barely understood in plants. MFP1 attachment factor 1 (MAF1) is a plant-specific NE-associated protein first identified in tomato (Lycopersicon esculentum). Here, we demonstrate that two Arabidopsis thaliana MAF1 homologs, WPP1 and WPP2, are associated with the NE specifically in undifferentiated cells of the root tip. Reentry into cell cycle after callus induction from differentiated root segments reprograms their NE association. Based on green fluorescent protein fusions and immunogold labeling data, the proteins are associated with the outer NE and the nuclear pores in interphase cells and with the immature cell plate during cytokinesis. RNA interference-based suppression of the Arabidopsis WPP family causes shorter primary roots, a reduced number of lateral roots, and reduced mitotic activity of the root meristem. Together, these data demonstrate the existence of regulated NE targeting in plants and identify a class of plant-specific NE proteins involved in mitotic activity.

摘要

核膜(NE)作为细胞核与细胞质之间大分子运输的选择性屏障,在有丝分裂过程中经历复杂的重组。不同的真核生物界在核膜功能和组成上表现出特异性。与脊椎动物不同,植物中核膜的蛋白质组成和核膜蛋白的功能几乎不为人知。MFP1附着因子1(MAF1)是一种首次在番茄(Lycopersicon esculentum)中发现的植物特异性核膜相关蛋白。在这里,我们证明拟南芥的两个MAF1同源物WPP1和WPP2,特异性地与根尖未分化细胞的核膜相关。从分化的根段诱导愈伤组织后重新进入细胞周期会重新编程它们与核膜的关联。基于绿色荧光蛋白融合和免疫金标记数据,这些蛋白在间期细胞中与外核膜和核孔相关,在胞质分裂期间与未成熟细胞板相关。基于RNA干扰对拟南芥WPP家族的抑制导致主根变短、侧根数量减少以及根分生组织的有丝分裂活性降低。总之,这些数据证明了植物中存在受调控的核膜靶向,并鉴定出一类参与有丝分裂活性的植物特异性核膜蛋白。

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