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中期后核形成:一种染色体表位的丢失与明显的染色单体合并同时发生。

Postmetaphase nuclear formation: loss of a chromosomal epitope coincident with apparent chromatid coalescence.

作者信息

Adams D L, Hodge L D

机构信息

Department of Cellular Biology and Anatomy, Medical College of Georgia, Augusta, Georgia 30912, USA.

出版信息

Chromosoma. 1996 Jul;105(1):31-40. doi: 10.1007/BF02510036.

Abstract

Previously, we have conceptualized mitotic nuclear formation following metaphase as a morphogenic process and have suggested that sets of chromatids, after separation from a metaphase plate, can be thought of as prenuclei. Such structures can be grouped temporally as either early or late prenuclei based on morphologic, morphometric and density characteristics. Sequential ordering of early prenuclei is of particular interest because it reveals that condensed chromatids coalesce with the resulting formation of a unique chambered structure. In this paper we describe data obtained with a newly raised monoclonal antibody (mAb-2) that initially recognizes an epitope(s) on metaphase chromosomes. Light and confocal fluorescent microscopy of early prenuclei reveal that the chromosomal epitope can no longer be detected about chromatids after their apparent coalescence. Immunoblot analysis of dispersed polypeptides of metaphase plates and early prenuclei indicates that the major protein antigens recognized by mAb-2 have apparent molecular masses of approximately 106000 and 80500 and that each is likely composed of multiple charge isomers. A dual fluorescent analysis using mAb-2 and high-titer anti-lamin B serum provides additional evidence that chromatid coalescence is a separate, early event that precedes nuclear lamina formation.

摘要

此前,我们已将中期之后的有丝分裂细胞核形成概念化为一个形态发生过程,并提出从中期板分离后的染色单体组可被视为前核。基于形态学、形态测量学和密度特征,这些结构可在时间上分为早期或晚期前核。早期前核的顺序排列特别令人感兴趣,因为它揭示了浓缩的染色单体合并,从而形成独特的腔室结构。在本文中,我们描述了用一种新产生的单克隆抗体(mAb - 2)获得的数据,该抗体最初识别中期染色体上的一个表位。早期前核的光学显微镜和共聚焦荧光显微镜观察显示,染色单体明显合并后,其染色体表位在染色单体上不再能被检测到。中期板和早期前核分散多肽的免疫印迹分析表明,mAb - 2识别的主要蛋白质抗原的表观分子量约为106000和80500,且每种可能由多个电荷异构体组成。使用mAb - 2和高滴度抗核纤层蛋白B血清进行的双重荧光分析提供了额外证据,表明染色单体合并是在核纤层形成之前的一个独立的早期事件。

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