Josephine Bay Paul Center, The Marine Biological Laboratory, Woods Hole, MA 02543, USA.
Proc Natl Acad Sci U S A. 2010 Aug 3;107(31):13718-23. doi: 10.1073/pnas.1008469107. Epub 2010 Jul 19.
The nucleolinus is an RNA-rich compartment, closely apposed to or embedded within the nucleolus. Discovered over 150 y ago, fewer than two dozen articles have been published on the nucleolinus, probably because complex histochemical stains are required for its visualization in the great majority of cells. The nucleolinus has been reported in invertebrate oocytes, mammalian and amphibian epithelial cells, neurons, and several transformed cell lines. A prominent nucleolinus, clearly visible with transmitted light microscopes at 10x magnification, is present in each oocyte of the surf clam, Spisula solidissima. We observed a consistent relationship between the nucleolinus and the developing meiotic apparatus following Spisula oocyte activation. Through sonication and sucrose gradient fractionation of purified oocyte nuclei, we isolated nucleolini, extracted their RNA, and prepared an in situ riboprobe (NLi-1), which is associated specifically with the nucleolinus, confirming its unique composition. Other in situ observations revealed a NLi-1 and nucleolinar association with the developing spindle and centrosomes. Laser microsurgery that targeted the nucleolinus resulted in failed meiotic cell division in parthenogenetically activated oocytes and failed mitosis in fertilized oocytes. Although the nucleolinus may be a forgotten organelle, its demonstrated role in spindle formation suggests it deserves renewed attention.
核仁小体是富含 RNA 的结构,紧密贴近或嵌入核仁。尽管核仁小体早在 150 多年前就被发现,但在绝大多数细胞中,由于需要复杂的组织化学染色才能将其可视化,因此只有不到二十篇文章对其进行了报道。核仁小体已经在无脊椎动物卵母细胞、哺乳动物和两栖类上皮细胞、神经元和几种转化细胞系中被报道。在美洲帘蛤的每个卵母细胞中都存在一个明显的核仁小体,可以在 10x 放大倍数的透射电子显微镜下清晰地看到。我们观察到,在美洲帘蛤卵母细胞激活后,核仁小体与正在发育的减数分裂装置之间存在一致的关系。通过对纯化卵母细胞核进行超声处理和蔗糖梯度分级,我们分离出核仁小体,提取其 RNA,并制备了一种原位杂交探针(NLi-1),该探针与核仁小体特异性结合,证实了其独特的组成。其他原位观察显示,NLi-1 与纺锤体和中心体的发育有关。针对核仁小体的激光微手术导致部分卵母细胞的减数分裂细胞分裂失败,受精卵母细胞的有丝分裂失败。尽管核仁小体可能是一个被遗忘的细胞器,但它在纺锤体形成中的作用表明它值得重新关注。