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A METHOD FOR COMPARING EFFECTS OF DIFFERENT SYNCHRONIZING PROTOCOLS ON MAMMALIAN CELL CYCLE TRAVERSE : The Traverse Perturbation Index

机译:比较不同同步协议对哺乳动物细胞周期遍历的影响的方法:遍历扰动指数

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摘要

After treatment of Chinese hamster cells (line CHO) with various protocols for synchrony induction, the subsequent ability of cells to traverse the cell cycle (i e., to perform, an essential cell cycle process) has been determined by measurement of the DNA distribution pattern among cells in large populations with the Los Alamos flow microfluorometer In the cultures prepared by the various synchronizing techniques the vast majority of cells traversed the cell cycle in a normal fashion; however, in all cultures examined there remained small subpopulations which, though remaining viable for several days, could not carry out normal traverse. After reversible inhibition of DNA synthesis by means of a double-thymidine blockade, approximately 17% of the cells were unable to complete genome replication. After reversal of G1 arrest resulting from cultivation of cells in isoleucine-deficient medium, 12 4% of the cells commenced synthesis of DNA but were unable to complete the S phase. Cells prepared by mitotic selection yielded a subpopulation (5 5% of the total cells) with a G1 DNA content which remained viable but noncycling for at least 5 days. We propose a term "traverse perturbation index" which is defined as the fraction of cells converted to a noncycle-traversing state as the result of experimental manipulation. A knowledge of the perturbation index will allow direct comparison of effects on cell cycle traverse of various synchrony-induction protocols
机译:用各种用于同步诱导的方案处理中国仓鼠细胞(CHO系)后,已经通过测量DNA分布确定了细胞穿越细胞周期的后续能力(即执行基本的细胞周期过程)。 Los Alamos流式微荧光计在大种群细胞中的分布模式在通过各种同步技术制备的培养物中,绝大多数细胞以正常的方式横穿细胞周期。但是,在所检查的所有文化中,都保留有少量亚群,尽管这些亚群可以存活数天,但却无法进行正常遍历。在通过双胸苷阻断可逆地抑制DNA合成后,大约17%的细胞无法完成基因组复制。在异亮氨酸缺乏的培养基中培养细胞导致G1逆转停止后,12 4%的细胞开始合成DNA,但无法完成S期。通过有丝分裂选择制备的细胞产生了亚群(占总细胞的5%),其G1 DNA含量仍然可行,但至少5天不循环。我们提出了术语“横向扰动指数”,其定义为由于实验操作而转化为非循环状态的细胞比例。摄动指数的知识将允许直接比较各种同步诱导方案对细胞周期遍历的影响

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