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首页> 外文期刊>BMC Molecular Biology >Inactivation of nucleolin leads to nucleolar disruption, cell cycle arrest and defects in centrosome duplication
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Inactivation of nucleolin leads to nucleolar disruption, cell cycle arrest and defects in centrosome duplication

机译:核仁素的失活导致核仁破坏,细胞周期停滞和中心体复制缺陷

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Background Nucleolin is a major component of the nucleolus, but is also found in other cell compartments. This protein is involved in various aspects of ribosome biogenesis from transcription regulation to the assembly of pre-ribosomal particles; however, many reports suggest that it could also play an important role in non nucleolar functions. To explore nucleolin function in cell proliferation and cell cycle regulation we used siRNA to down regulate the expression of nucleolin. Results We found that, in addition to the expected effects on pre-ribosomal RNA accumulation and nucleolar structure, the absence of nucleolin results in a cell growth arrest, accumulation in G2, and an increase of apoptosis. Numerous nuclear alterations, including the presence of micronuclei, multiple nuclei or large nuclei are also observed. In addition, a large number of mitotic cells showed a defect in the control of centrosome duplication, as indicated by the presence of more than 2 centrosomes per cell associated with a multipolar spindle structure in the absence of nucleolin. This phenotype is very similar to that obtained with the inactivation of another nucleolar protein, B23. Conclusion Our findings uncovered a new role for nucleolin in cell division, and highlight the importance of nucleolar proteins for centrosome duplication.
机译:背景核仁蛋白是核仁的主要成分,但也存在于其他细胞区室中。该蛋白参与核糖体生物发生的各个方面,从转录调控到核糖体前颗粒的装配;然而,许多报道表明它在非核仁功能中也可能起重要作用。为了探索核仁素在细胞增殖和细胞周期调控中的功能,我们使用了siRNA来下调核仁素的表达。结果我们发现,除了对核糖体前RNA积累和核仁结构的预期影响外,核仁素的缺失还会导致细胞生长停滞,G2积累和凋亡增加。还观察到许多核改变,包括微核,多核或大核的存在。另外,大量的有丝分裂细胞在中心体复制的控制中显示出缺陷,如在不存在核仁素的情况下,每个细胞中存在多于2个与多极纺锤体结构相关的中心体。该表型与另一种核仁蛋白B23失活所获得的表型非常相似。结论我们的发现揭示了核仁素在细胞分裂中的新作用,并突出了核仁蛋白对中心体复制的重要性。

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