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哺乳动物细胞核中着丝粒/前动粒的结构与动态组织

Structure and dynamic organization of centromeres/prekinetochores in the nucleus of mammalian cells.

作者信息

He D, Brinkley B R

机构信息

Department of Cell Biology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

J Cell Sci. 1996 Nov;109 ( Pt 11):2693-704. doi: 10.1242/jcs.109.11.2693.

Abstract

Although considerable research has been focused on understanding the structure and molecular organization of the centromere-kinetochore complex of mitotic chromosomes, few reports have dealt with the centromere (prekinetochore) in the interphase nucleus. In the present study, we utilized anti-centromere antibodies from the serum of patients with the autoimmune disease, scleroderma CREST (calcinosis, Raynaud's phenomenon, esophageal dismotility, sclerodactyly, telangiectasia), as probes to investigate the structure and morphogenesis of the centromere in interphase nuclei of three cell lines using laser scanning confocal microscopy and immunoelectron microscopy. Of particular interest were the chromosomes of the Indian muntjac (2n = 6 in females and 2n = 7 in males), whose large centromeres are thought to have evolved through the tandem fusion of smaller centromeres of a Chinese muntjac-like progenitor species (2n = 46). The various forms and patterns of centromeres observed in the nucleus correlated with stages in the cell cycle as determined by bromodeoxyuridine labeling and apparently represent stages in prereplication, replication and maturation. Immunoelectron microscopic studies using CREST antisera indicated that the high order structure of chromatin associated with each prekinetochore undergoes a regular unfolding-refolding cycle, displaying small bead-like subunits tandemly arranged along a linear thread of centromeric DNA, much like that reported for mitotic chromosomes. Individual centromeres/prekinetochores form a stable association with the 9-13 nm core filaments of the nucleoskeletal network in the nucleus that later become the chromosome scaffold of mitotic chromosomes. Our findings provide morphological support for the hypothesis that the spatial arrangements of individual centromeres within the nucleus may have influenced centromeric translocations and fusions during chromosome evolution. Therefore, the centromere-kinetochore complex, best known for its essential role in partitioning chromosomes in mitosis and meiosis, may also function in chromosome movements and associations in interphase.

摘要

尽管大量研究聚焦于理解有丝分裂染色体着丝粒 - 动粒复合体的结构和分子组织,但关于间期细胞核中的着丝粒(前动粒)的报道却很少。在本研究中,我们利用来自自身免疫性疾病硬皮病CREST(钙质沉着、雷诺现象、食管运动障碍、指端硬化、毛细血管扩张)患者血清中的抗着丝粒抗体作为探针,运用激光扫描共聚焦显微镜和免疫电子显微镜来研究三种细胞系间期细胞核中着丝粒的结构和形态发生。特别令人感兴趣的是印度麂的染色体(雌性2n = 6,雄性2n = 7),其大着丝粒被认为是通过类似中国麂的祖先物种(2n = 46)较小着丝粒的串联融合进化而来。在细胞核中观察到的着丝粒的各种形式和模式与通过溴脱氧尿苷标记确定的细胞周期阶段相关,并且显然代表了复制前、复制和成熟阶段。使用CREST抗血清的免疫电子显微镜研究表明,与每个前动粒相关的染色质高级结构经历了一个规则的展开 - 重新折叠循环,显示出沿着着丝粒DNA线性链串联排列的小珠状亚基,这与有丝分裂染色体的报道非常相似。单个着丝粒/前动粒与细胞核中核骨架网络的9 - 13纳米核心细丝形成稳定的关联,这些细丝后来成为有丝分裂染色体的染色体支架。我们的发现为以下假设提供了形态学支持:细胞核内单个着丝粒的空间排列可能在染色体进化过程中影响了着丝粒易位和融合。因此,着丝粒 - 动粒复合体,以其在有丝分裂和减数分裂中染色体分配的关键作用而闻名,在间期染色体运动和关联中可能也发挥作用。

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