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一种高度磷酸化的核仁蛋白p130的细胞周期依赖性改变与核仁形成相关。

Cell-cycle-dependent alterations of a highly phosphorylated nucleolar protein p130 are associated with nucleologenesis.

作者信息

Pai C Y, Chen H K, Sheu H L, Yeh N H

机构信息

Institute of Microbiology and Immunology, School of Life Science, National Yang-Ming University, Taipei, Taiwan, Republic of China.

出版信息

J Cell Sci. 1995 May;108 ( Pt 5):1911-20. doi: 10.1242/jcs.108.5.1911.

Abstract

We identified a novel human nucleolar phosphoprotein p130 (130 kDa) using a strategy for selecting monoclonal antibodies against nuclear proteins which oscillate in the cell cycle. p130 is localized in interphase nucleoli in a dotted manner. Complete extraction of p130 required a high concentration of salt (0.5 M NaCl) indicating that it binds firmly to the nucleolar components via ionic interaction. p130 is heavily phosphorylated, since alkaline phosphatase treatment converted the purified p130 into a 95 kDa product; this was further supported by the in vitro demonstration that cellular phosphatase and casein kinase II activities were responsible for the interchange of these two forms. Extracts of mitotic cells had lower concentrations of p130 compared to those of interphase cells suggesting that a proportion of p130 might be degraded during mitosis. Moreover, all the remaining p130 in mitotic cells was further phosphorylated, likely by a cdc2 kinase, resulting in increase in its solubility, and its dispersion throughout the entire cytoplasm. Thus, p130 in metaphase and anaphase cells was unable to be detected by immunofluorescence microscopy. At telophase, p130 reappeared and aggregated into a granular structure, resembling the prenucleolar bodies. These granules migrated from the nucleoplasm to the nucleoli in early G1-phase. Actinomycin D was able to induce segregation of p130-containing granules into the nucleoplasm, similar to the well-known behavior of the fibrillarin-containing granules, indicating that p130 is localized in the dense fibrillar component, a subnucleolar region for pre-rRNA synthesis and processing. The cDNA sequence of p130 revealed a remarkable feature, that a serine-rich stretch interspersed with acidic residues is repeated ten times. Such a characteristic is shared with a rat nucleolar phosphoprotein Nopp140, which is thought to shuttle between the nucleolus and the cytoplasm. Although p130 shows 74% identity to Nopp140, our observations suggest that during mitosis the functions of p130 are related to nucleologenesis.

摘要

我们采用一种策略,筛选针对在细胞周期中振荡的核蛋白的单克隆抗体,从而鉴定出一种新型人类核仁磷蛋白p130(130 kDa)。p130以点状形式定位于间期核仁中。完全提取p130需要高浓度的盐(0.5 M NaCl),这表明它通过离子相互作用与核仁成分紧密结合。p130高度磷酸化,因为碱性磷酸酶处理可将纯化的p130转化为95 kDa的产物;体外实验表明细胞磷酸酶和酪蛋白激酶II活性负责这两种形式的相互转换,这进一步支持了上述结论。与间期细胞提取物相比,有丝分裂细胞提取物中p130的浓度较低,这表明一部分p130可能在有丝分裂期间被降解。此外,有丝分裂细胞中所有剩余的p130会进一步磷酸化,可能是由cdc2激酶催化,导致其溶解度增加,并分散到整个细胞质中。因此,在中期和后期细胞中,无法通过免疫荧光显微镜检测到p130。在末期,p130重新出现并聚集成颗粒状结构,类似于前核仁体。这些颗粒在G1期早期从核质迁移到核仁。放线菌素D能够诱导含p130的颗粒分离到核质中,类似于含纤维蛋白原颗粒的众所周知的行为,表明p130定位于致密纤维成分中,这是一个用于前体rRNA合成和加工的核仁亚区域。p130的cDNA序列显示出一个显著特征,即富含丝氨酸的片段穿插着酸性残基,重复了十次。这种特征与大鼠核仁磷蛋白Nopp140相同,后者被认为在核仁和细胞质之间穿梭。尽管p130与Nopp140有74%的同一性,但我们的观察结果表明,在有丝分裂期间,p130的功能与核仁形成有关。

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