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Involvement of the nuclear pore complex in morphology of the plant nucleus

机译:核孔复合体参与植物细胞核形态的研究

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摘要

Trafficking between the nucleoplasm and the cytoplasm occurs through the nuclear pore complex (NPC), which consists of large multiprotein complexes. Over the last several years, major progress has been made in both structural determination of the entire assembly of the NPC in yeast and animal cells. By contrast, the plant NPC has long been neglected. Components of the NPC in Arabidopsis thaliana have been identified recently using an interactive proteomic approach. The Arabidopsis nucleoporins are homologous to human nucleoporins, except for a single protein called Nup136. Nup136 is involved in flowering and pollen development, suggesting that Nup136 plays a physiological role in plant reproduction. Nup136 also regulates morphology of the nucleus. Overexpression of Nup136-GFP was found to induce elongation of nuclei in various tissues, whereas deficiency of Nup136 caused a reduction in the size of nuclei. Nup136 is thought to be a functional homolog to animal Nup153, although they have no sequence homology. The mechanism underlying the regulation of nuclear morphology by Nup136, which is thought to be unique to higher plants, is discussed.
机译:核质和细胞质之间的运输是通过核孔复合物(NPC)进行的,后者由大型的多蛋白复合物组成。在过去的几年中,在酵母和动物细胞中NPC整个装配的结构测定方面都取得了重大进展。相比之下,植物NPC早已被忽略。最近已经使用交互式蛋白质组学方法鉴定了拟南芥中NPC的成分。拟南芥的核孔蛋白与人的核孔蛋白同源,唯一的蛋白质称为Nup136。 Nup136参与开花和花粉发育,表明Nup136在植物繁殖中起生理作用。 Nup136还调节细胞核的形态。 Nup136-GFP的过度表达被发现诱导各种组织中的核伸长,而Nup136的缺乏导致核的大小减少。 Nup136被认为是动物Nup153的功能同源物,尽管它们没有序列同源性。讨论了Nup136调节核形态的潜在机制,该机制被认为是高等植物所独有的。

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