Gaume Xavier, Monier Karine, Argoul Françoise, Mongelard Fabien, Bouvet Philippe
Université de Lyon, Laboratoire Joliot-Curie, Centre National de la Recherche Scientifique (CNRS)/Ecole Normale Supérieure de Lyon, 69007 Lyon, France.
Biochem Res Int. 2011;2011:187624. doi: 10.1155/2011/187624. Epub 2011 Mar 3.
Nucleolin is a major nucleolar protein involved in various aspects of ribosome biogenesis such as regulation of polymerase I transcription, pre-RNA maturation, and ribosome assembly. Nucleolin is also present in the nucleoplasm suggesting that its functions are not restricted to nucleoli. Nucleolin possesses, in vitro, chromatin co-remodeler and histone chaperone activities which could explain numerous functions of nucleolin related to the regulation of gene expression. The goal of this report was to investigate the consequences of nucleolin depletion on the dynamics of histones in live cells. Changes in histone dynamics occurring in nucleolin silenced cells were measured by FRAP experiments on eGFP-tagged histones (H2B, H4, and macroH2A). We found that nuclear histone dynamics was impacted in nucleolin silenced cells; in particular we measured higher fluorescence recovery kinetics for macroH2A and H2B but not for H4. Interestingly, we showed that nucleolin depletion also impacted the dissociation constant rate of H2B and H4. Thus, in live cells, nucleolin could play a role in chromatin accessibility by its histone chaperone and co-remodeling activities.
核仁素是一种主要的核仁蛋白,参与核糖体生物合成的各个方面,如聚合酶I转录的调控、前体RNA成熟和核糖体组装。核仁素也存在于核质中,这表明其功能并不局限于核仁。核仁素在体外具有染色质共重塑和组蛋白伴侣活性,这可以解释核仁素与基因表达调控相关的众多功能。本报告的目的是研究核仁素缺失对活细胞中组蛋白动态变化的影响。通过对eGFP标记的组蛋白(H2B、H4和macroH2A)进行荧光漂白恢复(FRAP)实验,测量核仁素沉默细胞中发生的组蛋白动态变化。我们发现核仁素沉默细胞中的细胞核组蛋白动态受到影响;特别是,我们测量到macroH2A和H2B的荧光恢复动力学较高,而H4则不然。有趣的是,我们表明核仁素缺失也影响了H2B和H4的解离常数速率。因此,在活细胞中,核仁素可能通过其组蛋白伴侣和共重塑活性在染色质可及性方面发挥作用。