Department of Genome Dynamics, University of California, Berkeley, CA 94720, USA.
J Cell Sci. 2011 May 1;124(Pt 9):1433-44. doi: 10.1242/jcs.077883. Epub 2011 Apr 12.
The multifunctional structural protein 4.1R is required for assembly and maintenance of functional nuclei but its nuclear roles are unidentified. 4.1R localizes within nuclei, at the nuclear envelope, and in cytoplasm. Here we show that 4.1R, the nuclear envelope protein emerin and the intermediate filament protein lamin A/C co-immunoprecipitate, and that 4.1R-specific depletion in human cells by RNA interference produces nuclear dysmorphology and selective mislocalization of proteins from several nuclear subcompartments. Such 4.1R-deficiency causes emerin to partially redistribute into the cytoplasm, whereas lamin A/C is disorganized at nuclear rims and displaced from nucleoplasmic foci. The nuclear envelope protein MAN1, nuclear pore proteins Tpr and Nup62, and nucleoplasmic proteins NuMA and LAP2α also have aberrant distributions, but lamin B and LAP2β have normal localizations. 4.1R-deficient mouse embryonic fibroblasts show a similar phenotype. We determined the functional effects of 4.1R-deficiency that reflect disruption of the association of 4.1R with emerin and A-type lamin: increased nucleus-centrosome distances, increased β-catenin signaling, and relocalization of β-catenin from the plasma membrane to the nucleus. Furthermore, emerin- and lamin-A/C-null cells have decreased nuclear 4.1R. Our data provide evidence that 4.1R has important functional interactions with emerin and A-type lamin that impact upon nuclear architecture, centrosome-nuclear envelope association and the regulation of β-catenin transcriptional co-activator activity that is dependent on β-catenin nuclear export.
多功能结构蛋白 4.1R 是组装和维持功能核所必需的,但它的核作用尚未确定。4.1R 定位于核内、核膜和细胞质中。在这里,我们表明 4.1R、核膜蛋白 emerin 和中间丝蛋白 lamin A/C 共同免疫沉淀,并且通过 RNA 干扰在人类细胞中特异性耗尽 4.1R 会导致核形态异常和来自几个核亚区室的蛋白质选择性定位错误。这种 4.1R 缺陷导致 emerin 部分重新分布到细胞质中,而 lamin A/C 在核边缘紊乱并从核质焦点移位。核膜蛋白 MAN1、核孔蛋白 Tpr 和 Nup62 以及核质蛋白 NuMA 和 LAP2α 也有异常分布,但 lamin B 和 LAP2β 的定位正常。4.1R 缺陷型小鼠胚胎成纤维细胞也表现出类似的表型。我们确定了 4.1R 缺陷的功能影响,反映了 4.1R 与 emerin 和 A 型 lamin 之间的关联中断:核-中心体距离增加、β-连环蛋白信号增加以及β-连环蛋白从质膜重新定位到核内。此外,emerin 和 lamin-A/C 缺陷型细胞中的核 4.1R 减少。我们的数据提供了证据,表明 4.1R 与 emerin 和 A 型 lamin 具有重要的功能相互作用,这些相互作用会影响核结构、中心体-核膜的关联以及 β-连环蛋白转录共激活因子活性的调节,而β-连环蛋白转录共激活因子活性的调节依赖于β-连环蛋白的核输出。