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在短暂低温延长的细胞周期中,中国仓鼠卵巢细胞(CHO细胞)内X射线诱导的DNA损伤和染色单体畸变的修复动力学。

Repair kinetics in CHO cells of X-ray induced DNA damage and chromatid aberrations during a cell cycle extended by transient hypothermia.

作者信息

MacLeod R A, Christie A F, Costa N D, Bryant P E

机构信息

Department of Biology and Preclinical Medicine, University of St Andrews, Fife, UK.

出版信息

Mutagenesis. 1990 May;5(3):279-83. doi: 10.1093/mutage/5.3.279.

Abstract

Transient hypothermia was employed to extend the G2 phase of CHO K1 cells in order to facilitate study of the repair of X-ray induced chromatid and DNA damage. Thus G2 + 1/2M at 37 degrees C of 2.9 h was lengthened to 5.7 h at 33 degrees C and 7.3 h at 29 degrees C. While chromatid break kinetics remained essentially unaltered at 33 degrees C, at 29 degrees C there was an initial shoulder followed by a decrease in breaks similar to that at 37 and 33 degrees C. Although fewer exchanges were observed at 33 and 29 degrees C than at 37 degrees C, a similar kinetic involving a sharp initial rise followed by a plateau was observed at 33 and 29 degrees C, and, as far as could be judged, also at 37 degrees C. The failure of G2 prolongation to influence the rate of break disappearance was taken as evidence in support of the view that the disappearance of chromatid breaks represented a repair process rather than the decline of chromosomal radiosensitivity throughout this phase, though the possibility of a reduced sensitivity close to the G2/M border remained open. This hypothesis was supported by the mainly flat kinetics of exchanges. The data were taken as further evidence that chromatid rejoining and misjoining (exchanges) are essentially different processes. The rates of repair of DNA double-strand breaks as measured by neutral filter elution were similar at 37 and 33 degrees C, while there was evidence of inhibition at 29 degrees C.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

采用短暂性低温来延长中国仓鼠卵巢(CHO)K1细胞的G2期,以便于研究X射线诱导的染色单体和DNA损伤的修复。因此,37℃时2.9小时的G2 + 1/2M期在33℃时延长至5.7小时,在29℃时延长至7.3小时。虽然在33℃时染色单体断裂动力学基本未变,但在29℃时,最初有一个平台期,随后断裂减少,类似于37℃和33℃时的情况。尽管在33℃和29℃时观察到的交换比在37℃时少,但在33℃和29℃时观察到类似的动力学,即最初急剧上升,随后达到平台期,并且据判断在37℃时也是如此。G2期延长未能影响断裂消失的速率,这被视为支持以下观点的证据:染色单体断裂的消失代表一个修复过程,而不是整个这一阶段染色体放射敏感性的下降,尽管接近G2/M边界时敏感性降低的可能性仍然存在。这一假设得到了交换主要呈平稳动力学的支持。这些数据被视为染色单体重新连接和错接(交换)本质上是不同过程的进一步证据。通过中性滤膜洗脱法测得的DNA双链断裂修复速率在37℃和33℃时相似,而在29℃时有抑制的证据。(摘要截短于250字)

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