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1
Nucleolus-like morphology produced during the in vitro reassociation of nucleolar components.核仁成分在体外重新缔合过程中产生的类核仁形态。
J Cell Biol. 1993 Aug;122(4):753-66. doi: 10.1083/jcb.122.4.753.
2
The nucleolus.核仁。
Anat Embryol (Berl). 1993 Dec;188(6):515-36. doi: 10.1007/BF00187008.
3
The functional organization of the nucleolus in proliferating plant cells.增殖植物细胞中核仁的功能组织
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4
Reassembly of functional nucleoli following in situ unraveling by low-ionic-strength treatment of cultured mammalian cells.通过对培养的哺乳动物细胞进行低离子强度处理使其原位解聚后功能性核仁的重新组装。
Exp Cell Res. 1997 May 25;233(1):155-68. doi: 10.1006/excr.1997.3556.
5
The relationship of ribosomal RNA synthesis to the formation of segregated nucleoli and nucleolus-like bodies.核糖体RNA合成与分离核仁及核仁样体形成之间的关系。
J Cell Biol. 1976 Dec;71(3):939-49. doi: 10.1083/jcb.71.3.939.
6
Fine silver staining analysis of the nucleolar organizer regions during oogenesis in Penaeus kerathurus (Crustacea, Decapoda).角突滨对虾(甲壳纲,十足目)卵子发生过程中核仁组织区的银染分析
J Submicrosc Cytol Pathol. 2001 Jan-Apr;33(1-2):47-57.
7
Components of the nucleolar processing complex (Pre-rRNA, fibrillarin, and nucleolin) colocalize during mitosis and are incorporated to daughter cell nucleoli.核仁加工复合体的组成成分(前体核糖体RNA、纤维蛋白原和核仁素)在有丝分裂期间共定位,并被纳入子细胞的核仁中。
Exp Cell Res. 1995 Nov;221(1):111-25. doi: 10.1006/excr.1995.1358.
8
Nucleolar changes after microinjection of antibodies to RNA polymerase I into the nucleus of mammalian cells.将抗RNA聚合酶I抗体显微注射到哺乳动物细胞核后核仁的变化。
Chromosoma. 1988;97(2):115-23. doi: 10.1007/BF00327368.
9
High resolution detection of rRNA and rDNA in plant nucleoli with different activities by in situ hybridization.通过原位杂交对具有不同活性的植物核仁中的rRNA和rDNA进行高分辨率检测。
Biol Cell. 2000 Jan;92(1):59-70. doi: 10.1016/s0248-4900(00)88764-x.
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The cytotoxicity of human immunodeficiency virus type 1 Rev: implications for its interaction with the nucleolar protein B23.1型人类免疫缺陷病毒Rev的细胞毒性:及其与核仁蛋白B23相互作用的意义
Exp Cell Res. 1995 Jul;219(1):93-101. doi: 10.1006/excr.1995.1209.

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1
A Method for Extracting the Nuclear Scaffold from the Chromatin Network.一种从染色质网络中提取核支架的方法。
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Who's In and Who's Out-Compositional Control of Biomolecular Condensates.谁进谁出——生物分子凝聚物的组成控制。
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The structure of the mitotic spindle and nucleolus during mitosis in the amebo-flagellate Naegleria.在阿米巴-鞭毛虫纳氏疟原虫有丝分裂过程中,有丝分裂纺锤体和核仁的结构。
PLoS One. 2012;7(4):e34763. doi: 10.1371/journal.pone.0034763. Epub 2012 Apr 6.
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The Naegleria genome: a free-living microbial eukaryote lends unique insights into core eukaryotic cell biology.纳格里亚虫基因组:自由生活的微生物真核生物为核心真核细胞生物学提供了独特的见解。
Res Microbiol. 2011 Jul-Aug;162(6):607-18. doi: 10.1016/j.resmic.2011.03.003. Epub 2011 Mar 21.
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Identification of Leishmania proteins preferentially released in infected cells using change mediated antigen technology (CMAT).利用基于变化介导的抗原技术(CMAT)鉴定在感染细胞中优先释放的利什曼原虫蛋白。
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The ribosomal RNA processing machinery is recruited to the nucleolar domain before RNA polymerase I during Xenopus laevis development.在非洲爪蟾发育过程中,核糖体RNA加工机制在RNA聚合酶I之前被招募到核仁区域。
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7
Experimental induction of prenucleolar bodies (PNBs) in interphase cells: interphase PNBs show similar characteristics as those typically observed at telophase of mitosis in untreated cells.间期细胞中前核仁体(PNBs)的实验诱导:间期PNBs表现出与未处理细胞有丝分裂末期通常观察到的那些特征相似的特性。
Chromosoma. 1997 Jun;105(7-8):418-30. doi: 10.1007/BF02510478.
8
Post-mitotic assembly of the nucleolus. I. The internal matrix network is a recruitment site for processing nucleolar components in prenucleolar bodies.有丝分裂后核仁的组装。I. 内部基质网络是前核仁体中加工核仁成分的招募位点。
Chromosome Res. 1996 Feb;4(2):103-10. doi: 10.1007/BF02259702.
9
Topographic changes in a heterochromatic chromosome block in humans (15P) during formation of the nucleolus.人类(15P)异染色质染色体区域在核仁形成过程中的拓扑变化。
Chromosome Res. 1995 Aug;3(5):309-14. doi: 10.1007/BF00713069.

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THE FINE STRUCTURE OF THE NUCLEOLUS DURING MITOSIS IN THE GRASSHOPPER NEUROBLAST CELL.蚱蜢神经母细胞有丝分裂期间核仁的精细结构
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Nucleolar nomenclature.核仁命名法。
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Nucleolar structure.核仁结构。
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Cell differentiation and flagellar elongation in Naegleria gruberi. Dependence on transcription and translation.格氏耐格里变形虫中的细胞分化与鞭毛伸长。对转录和翻译的依赖性。
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核仁成分在体外重新缔合过程中产生的类核仁形态。

Nucleolus-like morphology produced during the in vitro reassociation of nucleolar components.

作者信息

Trimbur G M, Walsh C J

机构信息

Department of Biological Sciences, University of Pittsburgh, Pennsylvania 15260.

出版信息

J Cell Biol. 1993 Aug;122(4):753-66. doi: 10.1083/jcb.122.4.753.

DOI:10.1083/jcb.122.4.753
PMID:7688750
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2119580/
Abstract

Nucleoli, the sites of rRNA synthesis, rRNA processing, and the assembly of ribosomes, are dynamic organelles that, in most cells, disperse and reform during mitosis. The mechanisms that regulate nucleolar formation are unknown as is the relationship between nucleolar morphology and the pathway of ribosome biogenesis. In this report we describe the in vitro formation of nucleolus-like particles (NLPs) from soluble extracts of nucleoli. NLPs, which reached sizes comparable to nucleoli (1-3 microns), were found to contain 40% of the nucleolar DNA, RNA, and protein. The ultrastructure of NLPs resembled that of a number of in vivo structures including compact nucleoli, prenucleolar bodies, and pseudonucleoli. The particles were composed of two morphologically distinct regions. The core resembled the dense fibrillar component (DFC) of nucleoli while the cortex resembled the granular component (GC) of nucleoli. The cortex of NLPs contained numerous 15-20 nm osmophilic granules that resembled the preribosomes found in the GC of nucleoli. The distribution of nucleolar proteins in NLPs also resembled that in nucleoli. BN46/51, a component of the GC of nucleoli, was restricted to the GC-like cortex of NLPs. A mAb that bound to the DFC of nucleoli, bound only to the DFC-like core of NLPs while a second mAb that bound to both the DFC and GC of nucleoli, bound to both the core and cortex of NLPs. Thus solubilized components of nucleoli can reassociate in vitro to produce particles that resemble nucleoli in their size, ultrastructure, and protein distribution.

摘要

核仁是rRNA合成、rRNA加工以及核糖体组装的场所,是一种动态细胞器,在大多数细胞中,在有丝分裂期间会分散并重新形成。调节核仁形成的机制尚不清楚,核仁形态与核糖体生物发生途径之间的关系也不清楚。在本报告中,我们描述了从核仁的可溶性提取物中体外形成核仁样颗粒(NLP)。发现大小与核仁相当(1-3微米)的NLP含有40%的核仁DNA、RNA和蛋白质。NLP的超微结构类似于许多体内结构,包括致密核仁、核仁前体和假核仁。这些颗粒由两个形态上不同的区域组成。核心类似于核仁的致密纤维成分(DFC),而皮质类似于核仁的颗粒成分(GC)。NLP的皮质含有许多15-20纳米的嗜锇颗粒,类似于在核仁GC中发现的前核糖体。核仁蛋白在NLP中的分布也类似于在核仁中的分布。BN46/51是核仁GC的一个成分,仅限于NLP的GC样皮质。一种与核仁DFC结合的单克隆抗体,仅与NLP的DFC样核心结合,而另一种与核仁DFC和GC都结合的单克隆抗体,则与NLP的核心和皮质都结合。因此,核仁的可溶性成分可以在体外重新结合,产生在大小、超微结构和蛋白质分布上类似于核仁的颗粒。