Dittmer Travis A, Stacey Nicola J, Sugimoto-Shirasu Keiko, Richards Eric J
Department of Biology, Washington University, St Louis, MO 63130, USA.
Plant Cell. 2007 Sep;19(9):2793-803. doi: 10.1105/tpc.107.053231. Epub 2007 Sep 14.
Efforts to understand nuclear organization in plant cells have received little assistance from the better-studied animal nuclei, because plant proteomes do not contain recognizable counterparts to the key animal proteins involved in nuclear organization, such as lamin nuclear intermediate filament proteins. Previous studies identified a plant-specific insoluble nuclear protein in carrot (Daucus carota), called Nuclear Matrix Constituent Protein1 (NMCP1), which contains extensive coiled-coil domains and localizes to the nuclear periphery. Here, we describe a genetic characterization of two NMCP1-related nuclear proteins in Arabidopsis thaliana, LITTLE NUCLEI1 (LINC1) and LINC2. Disruption of either gene caused a reduction in nuclear size and altered nuclear morphology. Moreover, combining linc1 and linc2 mutations had an additive effect on nuclear size and morphology but a synergistic effect on chromocenter number (reduction) and whole-plant morphology (dwarfing). The reduction in nuclear size in the linc1 linc2 double mutant was not accompanied by a corresponding change in endopolyploidy. Rather, the density of DNA packaging at all endopolyploid levels in the linc1 linc2 mutants was increased significantly. Our results indicate that the LINC coiled-coil proteins are important determinants of plant nuclear structure.
由于植物蛋白质组中不包含与参与细胞核组织的关键动物蛋白(如核纤层核中间丝蛋白)具有可识别对应物的蛋白质,因此在植物细胞中理解细胞核组织的研究很少能从对动物细胞核研究得更深入的成果中获得帮助。先前的研究在胡萝卜(胡萝卜属)中鉴定出一种植物特异性不溶性核蛋白,称为核基质组成蛋白1(NMCP1),它含有广泛的卷曲螺旋结构域并定位于核周。在这里,我们描述了拟南芥中两种与NMCP1相关的核蛋白——小核1(LINC1)和LINC2的遗传特征。任一基因的破坏都会导致核大小减小并改变核形态。此外,将linc1和linc2突变结合对核大小和形态有累加效应,但对染色中心数量(减少)和全株形态(矮化)有协同效应。linc1 linc2双突变体中核大小的减小并未伴随着内多倍体的相应变化。相反,linc1 linc2突变体中所有内多倍体水平的DNA包装密度均显著增加。我们的结果表明,LINC卷曲螺旋蛋白是植物核结构的重要决定因素。