Laboratory of Functional Genomics and Plant Molecular Imaging, Department of Life Sciences, Institute of Botany, University of Liège, B-4000 Liege, Belgium.
Plant Physiol. 2010 May;153(1):273-84. doi: 10.1104/pp.110.154740. Epub 2010 Mar 17.
Serine/arginine-rich (SR) proteins are essential nuclear-localized splicing factors. We have investigated the dynamic subcellular distribution of the Arabidopsis (Arabidopsis thaliana) RSZp22 protein, a homolog of the human 9G8 SR factor. Little is known about the determinants underlying the control of plant SR protein dynamics, and so far most studies relied on ectopic transient overexpression. Here, we provide a detailed analysis of the RSZp22 expression profile and describe its nucleocytoplasmic shuttling properties in specific cell types. Comparison of transient ectopic- and stable tissue-specific expression highlights the advantages of both approaches for nuclear protein dynamic studies. By site-directed mutagenesis of RSZp22 RNA-binding sequences, we show that functional RNA recognition motif RNP1 and zinc-knuckle are dispensable for the exclusive protein nuclear localization and speckle-like distribution. Fluorescence resonance energy transfer imaging also revealed that these motifs are implicated in RSZp22 molecular interactions. Furthermore, the RNA-binding motif mutants are defective for their export through the CRM1/XPO1/Exportin-1 receptor pathway but retain nucleocytoplasmic mobility. Moreover, our data suggest that CRM1 is a putative export receptor for mRNPs in plants.
丝氨酸/精氨酸丰富(SR)蛋白是必不可少的核定位剪接因子。我们研究了拟南芥(Arabidopsis thaliana)RSZp22 蛋白的动态亚细胞分布,该蛋白是人类 9G8 SR 因子的同源物。目前人们对植物 SR 蛋白动力学的控制决定因素知之甚少,到目前为止,大多数研究都依赖于异位瞬时过表达。在这里,我们详细分析了 RSZp22 的表达谱,并描述了它在特定细胞类型中的核质穿梭特性。瞬时异位和稳定组织特异性表达的比较突出了这两种方法在核蛋白动态研究中的优势。通过对 RSZp22 RNA 结合序列的定点突变,我们表明功能性 RNA 识别基序 RNP1 和锌指对于蛋白质的核定位和斑点样分布是可有可无的。荧光共振能量转移成像也表明,这些基序参与了 RSZp22 分子间的相互作用。此外,这些 RNA 结合基序突变体不能通过 CRM1/XPO1/Exportin-1 受体途径进行输出,但仍保持核质流动性。此外,我们的数据表明,CRM1 可能是植物中 mRNP 的推定输出受体。