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弗氏红白血病分化过程中DNA拓扑学螺旋数目的减少

Decrease in the number of DNA topological turns during Friend erythroleukemia differentiation.

作者信息

Luchnik A N, Glaser V M

出版信息

Mol Gen Genet. 1980;178(2):459-63. doi: 10.1007/BF00270500.

Abstract

Murine erythroleukemia cells were induced to undergo erythroid differentiation by growing in presence of dimethylsulfoxide, butyric acid or actinomycin D. topological linking numbers in closed loops of nuclear DNA were measured by means of centrifugation of nucleoids containing superhelical DNA in sucrose gradients containing varying concentrations of ethidium bromide. All cells were grown to G1 stage of the cell cycle. It was found that the mean density of the DNA topological linking number decreases from 0.076 turns per 10 nucleotide pairs in non-differentiated cells to 0.062 turns in the cells induced to differentiate. This decrease in topological linking number of DNA loops is quite sufficient for the change in the DNA double helix secondary structure which in turn may be responsible for coordinate switch in transcription of genes which control cellular differentiation (Luchnik, 1980a, b).

摘要

小鼠红白血病细胞在二甲基亚砜、丁酸或放线菌素D存在的情况下生长时被诱导进行红系分化。通过在含有不同浓度溴化乙锭的蔗糖梯度中对含有超螺旋DNA的核小体进行离心,测量核DNA闭环中的拓扑连接数。所有细胞均生长至细胞周期的G1期。结果发现,DNA拓扑连接数的平均密度从未分化细胞中的每10个核苷酸对0.076圈降至诱导分化细胞中的0.062圈。DNA环拓扑连接数的这种减少足以引起DNA双螺旋二级结构的变化,而这反过来可能是控制细胞分化的基因转录协调开关的原因(卢奇尼克,1980a,b)。

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