Ng C E, Banerjee S K, Pavliv M, Wang G, Raaphorst G P, Aubin R A
Ottawa Regional Cancer Centre, Ontario, Canada.
Int J Radiat Biol. 1999 Nov;75(11):1365-76. doi: 10.1080/095530099139241.
To investigate the factors contributing to the in vitro radiosensitivity of four human pancreatic adenocarcinoma cell lines differing in p53 status, and the basis for the lack of post-irradiation G1 arrest in the two cell lines that have retained a wild-type p53 allele.
Cells were X-irradiated and the parameters related to radiosensitivity, as well as the modulation of gene products linked to regulation of cell cycle transit (p53, p21/WAF1/CIP1, pRb) or DNA replication and repair (DNA topoisomerase I and II), were determined.
Both cell lines expressing either mutant (mt) R248W or R273H p53 proteins were more radioresistant. All the cell lines arrested in G2. None of the cell lines arrested in G1 and this was linked to the inability to upregulate p21/WAF1/CIP1. There were no correlations between p53 status and the magnitude or time of maximum G2 arrest. However, there was a negative correlation between a protracted arrest in G2 and the ability to recover from potentially lethal damage (PLD).
Variation in radiosensitivity is related to p53 status, but the survival advantage conferred by having mutant p53 status is not readily explained neither by recovery from PLD nor by cell cycle arrest kinetics. There is no p53-independent pathway for the recruitment of p21 in these cell lines following irradiation.
研究影响四种p53状态不同的人胰腺腺癌细胞系体外放射敏感性的因素,以及两个保留野生型p53等位基因的细胞系在照射后缺乏G1期阻滞的原因。
对细胞进行X射线照射,测定与放射敏感性相关的参数,以及与细胞周期进程调控(p53、p21/WAF1/CIP1、pRb)或DNA复制与修复(DNA拓扑异构酶I和II)相关的基因产物的调节情况。
表达突变型(mt)R248W或R273H p53蛋白的两个细胞系均具有更高的放射抗性。所有细胞系均阻滞于G2期。没有细胞系阻滞于G1期,这与无法上调p21/WAF1/CIP1有关。p53状态与G2期最大阻滞的程度或时间之间没有相关性。然而,G2期的长期阻滞与从潜在致死性损伤(PLD)中恢复的能力之间存在负相关。
放射敏感性的差异与p53状态有关,但具有突变型p53状态所赋予的生存优势,既不能通过从PLD中恢复,也不能通过细胞周期阻滞动力学来轻易解释。在这些细胞系中,照射后不存在不依赖p53的p21募集途径。