Eilbracht Jens, Reichenzeller Michaela, Hergt Michaela, Schnölzer Martina, Heid Hans, Stöhr Michael, Franke Werner W, Schmidt-Zachmann Marion S
Division of Cell Biology, German Cancer Research Center, D-69120 Heidelberg, Germany.
Mol Biol Cell. 2004 Apr;15(4):1816-32. doi: 10.1091/mbc.e03-08-0623. Epub 2004 Jan 23.
It has recently become clear that the nucleolus, the most prominent nuclear subcompartment, harbors diverse functions beyond its classic role in ribosome biogenesis. To gain insight into nucleolar functions, we have purified amplified nucleoli from Xenopus laevis oocytes using a novel approach involving fluorescence-activated cell sorting techniques. The resulting protein fraction was analyzed by mass spectrometry and used for the generation of monoclonal antibodies directed against nucleolar components. Here, we report the identification and molecular characterization of a novel, ubiquitous protein, which in most cell types appears to be a constitutive nucleolar component. Immunolocalization studies have revealed that this protein, termed NO66, is highly conserved during evolution and shows in most cells analyzed a dual localization pattern, i.e., a strong enrichment in the granular part of nucleoli and in distinct nucleoplasmic entities. Colocalizations with proteins Ki-67, HP1alpha, and PCNA, respectively, have further shown that the staining pattern of NO66 overlaps with certain clusters of late replicating chromatin. Biochemical experiments have revealed that protein NO66 cofractionates with large preribosomal particles but is absent from cytoplasmic ribosomes. We propose that in addition to its role in ribosome biogenesis protein NO66 has functions in the replication or remodeling of certain heterochromatic regions.
最近已经明确,核仁作为最显著的核亚区室,除了在核糖体生物合成中的经典作用外,还具有多种功能。为了深入了解核仁功能,我们采用了一种涉及荧光激活细胞分选技术的新方法,从非洲爪蟾卵母细胞中纯化了扩增的核仁。对所得蛋白质组分进行质谱分析,并用于生成针对核仁成分的单克隆抗体。在此,我们报告了一种新型普遍存在蛋白质的鉴定和分子特征,在大多数细胞类型中,它似乎是一种组成型核仁成分。免疫定位研究表明,这种名为NO66的蛋白质在进化过程中高度保守,并且在大多数分析的细胞中呈现双重定位模式,即在核仁的颗粒部分和不同的核质实体中强烈富集。分别与蛋白质Ki-67、HP1α和PCNA共定位进一步表明,NO66的染色模式与某些晚期复制染色质簇重叠。生化实验表明,蛋白质NO66与大的前核糖体颗粒共分离,但不存在于细胞质核糖体中。我们提出,除了在核糖体生物合成中的作用外,蛋白质NO66在某些异染色质区域的复制或重塑中也具有功能。