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Composition and Dynamics of the Nucleolinus a Link between the Nucleolus and Cell Division Apparatus in Surf Clam (Spisula) Oocytes

机译:Nucleolinus的组成和动力学Surf Clam(Spisula)卵母细胞中Neucleolus和细胞分裂装置之间的联系

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摘要

The nucleolinus is a little-known cellular structure, discovered over 150 years ago (Agassiz, L. (1857) Contributions to the Natural History of the United States of America, First Monograph, Part IIL, Little, Brown and Co., Boston) and thought by some investigators in the late 19th to mid-20th century to function in the formation of the centrosomes or spindle. A role for the nucleolinus in formation of the cell division apparatus has recently been confirmed in oocytes of the surf clam, Spisula solidissima (Alliegro, M. A., Henry, J. J., and Alliegro, M. C. (2010) Proc. Natl. Acad. Sci. U.S.A. 107, 13718–13723). However, we know so little about the composition and dynamics of this compartment, it is difficult to construct mechanistic hypotheses or even to be sure that prior reports were describing analogous structures in the cells of mammals, amphibians, plants, and other organisms where it was observed. Surf clam oocytes are an attractive model to approach this problem because the nucleolinus is easily visible by light microscopy, making it accessible by laser microsurgery as well as isolation by common cell fractionation techniques. In this report, we analyze the macromolecular composition of isolated Spisula nucleolini and examine the relationship of this structure to the nucleolus and cell division apparatus. Analysis of nucleolinar RNA and protein revealed a set of molecules that overlaps with but is nevertheless distinct from the nucleolus. The proteins identified were primarily ones involved in nucleic acid metabolism and cell cycle regulation. Monoclonal antibodies generated against isolated nucleolini revealed centrosomal forerunners in the oocyte cytoplasm. Finally, induction of damage to the nucleolinus by laser microsurgery altered the trafficking of α- and γ-tubulin after fertilization. These observations strongly support a role for the nucleolinus in cell division and represent our first clues regarding mechanism.
机译:核仁是一种鲜为人知的细胞结构,发现于150年前(Agassiz,L.(1857)对美国自然历史的贡献,第一部专论,第IIL部分,Little,Brown and Co.,波士顿)在19世纪至20世纪中叶,一些研究人员认为这种作用在中心体或纺锤体的形成中起作用。最近,在冲浪蛤的卵母细胞中,确认了核仁在细胞分裂装置的形成中的作用(固结螺旋藻(MAS,Alliegro,MA,Henry,JJ和MC,Alliegro,2010),美国国家科学院院刊,Proc.Natl.Acad.Sci.USA)。 107,13718–13723)。但是,我们对该隔间的组成和动力学知之甚少,很难构造出机械学的假设,甚至难以确保先前的报道描述的是哺乳动物,两栖动物,植物和其他生物的细胞中的类似结构。观测到的。冲浪蛤卵母细胞是解决此问题的一个有吸引力的模型,因为核仁在光学显微镜下很容易看到,可以通过激光显微术以及通过普通细胞分离技术进行分离来获得。在本报告中,我们分析了分离的螺旋藻核仁的大分子组成,并检查了该结构与核仁和细胞分裂装置的关系。核仁RNA和蛋白质的分析显示出一组与核仁重叠但又与核仁不同的分子。鉴定出的蛋白质主要是参与核酸代谢和细胞周期调控的蛋白质。针对分离的核仁产生的单克隆抗体揭示了卵母细胞胞质中的中心体先行者。最后,通过激光显微手术对核仁的损伤诱导改变了受精后α-和γ-微管蛋白的运输。这些观察结果强烈支持了核仁在细胞分裂中的作用,并代表了我们有关机制的第一个线索。

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