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Different central nervous system cell types display distinct and nonrandom arrangements of satellite DNA sequences.

机译:不同的中枢神经系统细胞类型显示卫星DNA序列的不同和非随机排列。

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摘要

Paraformaldehyde-fixed tissue from mouse cerebellum was hybridized with biotin-labeled satellite DNA for identification of centromeres. By using avidin-peroxidase conjugates, it was possible to define the nuclear position of centromeres at the ultrastructural level. Three-dimensional analysis of well-resolved centromere arrays were aided by computer reconstruction of serial sections. Different cell types displayed distinct, nonrandom centromere locations. In Purkinje neurons, the majority of detected sequences were clustered together around the central nucleolus, whereas in granule neurons, more numerous, dispersed centromere clusters were associated with the nuclear membrane. In Purkinje cells, peroxidase-labeled regions corresponded to dense heterochromatic aggregates were detected in Purkinje cells of several different species. These observations suggest that in these highly differentiated cells, the nuclear position of centromeres is maintained in evolution despite species differences in centromeric DNA sequence. Such defined ordering of centromeres may be integral to specific functional capacities.
机译:将小鼠小脑的低聚甲醛固定组织与生物素标记的卫星DNA杂交以鉴定着丝粒。通过使用抗生物素蛋白-过氧化物酶结合物,可以在超微结构水平上定义着丝粒的核位置。连续切片的计算机重建有助于很好地解析着丝粒阵列的三维分析。不同的细胞类型显示出不同的非随机着丝粒位置。在浦肯野神经元中,大多数检测到的序列聚集在中央核仁周围,而在颗粒神经元中,更多,分散的着丝粒簇与核膜相关。在浦肯野细胞中,在几种不同物种的浦肯野细胞中检测到对应于致密异色聚集体的过氧化物酶标记区域。这些观察结果表明,尽管着丝粒DNA序列中存在物种差异,但在这些高度分化的细胞中,着丝粒的核位置在进化中得以维持。这样定义的着丝粒顺序可能是特定功能的组成部分。

著录项

  • 作者

    Manuelidis, L;

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  • 年度 1984
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  • 原文格式 PDF
  • 正文语种 en
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