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五元染色质-DNA结构。三维重建及功能意义。

The quinternary chromatin-DNA structure. Three-dimensional reconstruction and functional significance.

作者信息

Kendall F M, Beltrame F, Zietz S, Belmont A, Nicolini C

出版信息

Cell Biophys. 1980 Dec;2(4):373-404. doi: 10.1007/BF02785100.

Abstract

Nuclear DNA-space images from Feulgen-stained HeLa cells synchronized at 1, 3, 5, 8, 12, 15, and 18 h following mitosis are digitized and their densitometric-geometric patterns are analyzed by means of a Quantimet 720-D image analyzer on line with a PDP11/40 computer. Frequency distributions of picture point optical densities for the phases and subphases as seen in nuclear images show that DNA packing changes are evident by means of ordinary optical microscopy. Radii of gyration of the images, and optical density profiles and distributions for several squashes of similar cells reveal that in particular instances chromatin DNA is distributed mostly towards the periphery, and usually with high circular isotropy. Cross power spectra of individual scan lines suggest that existence of higher order "quinternary" periodic structure for chromatin that modulates during the cell cycle. Three-dimensional reconstruction 2- micrometer sections of intact, Feulgen-stained mammalian tumor tissue show stainable material only toward the nuclear perimeter and not in the center (compatible with the evidence that initial thymidine incorporation in HeLa cells is generally at the nuclear border). Densitometric properties of reconstructed interphase chromatin-DNA bodies are highly coupled with similar properties of the whole nucleus, showing that a more condensed nucleus is always accompanied by a more condensed interphase chromatin DNA. The effect of micrococcal nuclease digestion on the digitized nuclear images is also presented. All the above data are then discussed in terms of a quinternary chromatin-DNA structure and its modulation during the cell cycle.

摘要

对有丝分裂后1、3、5、8、12、15和18小时同步化的福尔根染色的HeLa细胞的核DNA空间图像进行数字化处理,并通过与PDP11/40计算机联机的Quantimet 720-D图像分析仪分析其密度几何图案。核图像中可见的各期和亚期的图像点光密度频率分布表明,通过普通光学显微镜可以明显看出DNA包装的变化。图像的回转半径以及几个相似细胞涂片的光密度分布和轮廓显示,在特定情况下,染色质DNA大多分布在周边,且通常具有高度的圆形各向同性。单个扫描线的交叉功率谱表明,染色质存在更高阶的“四级”周期性结构,且在细胞周期中会发生调制。对完整的福尔根染色的哺乳动物肿瘤组织的2微米切片进行三维重建,结果显示可染色物质仅朝向核周边,而非在核中心(这与HeLa细胞中最初的胸苷掺入通常发生在核边界的证据相符)。重建的间期染色质-DNA体的密度特性与整个细胞核的类似特性高度相关,表明核越浓缩,间期染色质DNA也越浓缩。文中还介绍了微球菌核酸酶消化对数字化核图像的影响。然后根据四级染色质-DNA结构及其在细胞周期中的调制对上述所有数据进行了讨论。

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