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非洲爪蟾早期胚胎发育过程中的染色体长度和DNA环大小。

Chromosome length and DNA loop size during early embryonic development of Xenopus laevis.

作者信息

Micheli G, Luzzatto A R, Carrì M T, de Capoa A, Pelliccia F

机构信息

Centro Acidi Nucleici C.N.R., Università Roma La Sapienza, Italy.

出版信息

Chromosoma. 1993 Jul;102(7):478-83. doi: 10.1007/BF00357103.

Abstract

The looped organization of the eukaryotic genome mediated by a skeletal framework of non-histone proteins is conserved throughout the cell cycle. The radial loop/scaffold model envisages that the higher order architecture of metaphase chromosomes relies on an axial structure around which looped DNA domains are radially arranged through stable attachment sites. In this light we investigated the relationship between the looped organization and overall morphology of chromosomes. In developing Xenopus laevis embryos at gastrulation, the bulk of the loops associated with histone-depleted nuclei exhibit a significant size increase, as visualized by fluorescence microscopy of the fully extended DNA halo surrounding high salt treated, ethidium bromide stained nuclei. This implies a reduction in the number of looped domains anchored to the supporting nucleoskeletal structure. The cytological analysis of metaphase plates from acetic acid fixed whole embryos, carried out in the absence of drugs inducing chromosome condensation, reveals a progressive thickening and shortening of metaphase chromosomes during development. We interpret these findings as a strong indication that the size and number of DNA loops influence the thickness and length of the chromosomes, respectively. The quantitative analysis of chromosome length distributions at different developmental stages suggests that the shortening is timed differently in different embryonic cells.

摘要

由非组蛋白骨架介导的真核基因组的环状组织在整个细胞周期中都是保守的。径向环/支架模型设想中期染色体的高阶结构依赖于一个轴向结构,环状DNA结构域通过稳定的附着位点围绕该轴向结构呈放射状排列。据此,我们研究了染色体的环状组织与整体形态之间的关系。在非洲爪蟾胚胎原肠胚形成期,与组蛋白缺失核相关的大部分环的大小显著增加,这通过对经高盐处理、溴化乙锭染色的核周围完全伸展的DNA晕进行荧光显微镜观察得以可视化。这意味着锚定在支持性核骨架结构上的环状结构域数量减少。在不使用诱导染色体凝聚的药物的情况下,对乙酸固定的整个胚胎的中期板进行细胞学分析,结果显示在发育过程中中期染色体逐渐变粗和缩短。我们将这些发现解释为一个有力的迹象,即DNA环的大小和数量分别影响染色体的粗细和长度。对不同发育阶段染色体长度分布的定量分析表明,不同胚胎细胞中染色体缩短的时间不同。

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