Jonsson G G, Jacobson E L, Jacobson M K
Department of Biochemistry, Texas College of Osteopathic Medicine, University of North Texas, Fort Worth 76107.
Cancer Res. 1988 Aug 1;48(15):4233-9.
The effects of hyperthermia on adenine nucleotide metabolism including NAD and poly(ADP-ribose) have been studied in confluent cultures of C3H10T1/2 cells. Cells replated immediately following hyperthermic treatment showed only 9% survival relative to controls while after a 24-h recovery period at 37 degrees C survival was 87% of control. Hyperthermic treatment caused no detectable effect on total cellular levels of either NAD or ATP but produced a prolonged increase in cellular content of poly(ADP-ribose). Studies of the mechanism of this effect show that a major alteration of poly(ADP-ribose) metabolism caused by hyperthermia involves a decrease in the rate of turnover of polymers of ADP-ribose. Normal polymer turnover rates were restored during recovery at 37 degrees C even in the presence of cyclohexamide. The results argue that poly(ADP-ribose) glycohydrolase activity is reversibly altered by hyperthermia. Inhibition of poly(ADP-ribose) synthesis following hyperthermia delays recovery of normal rates of protein synthesis and recovery of the ability of the cells to plate and form colonies.
在C3H10T1/2细胞的汇合培养物中,研究了热疗对包括NAD和聚(ADP - 核糖)在内的腺嘌呤核苷酸代谢的影响。热疗处理后立即重新接种的细胞相对于对照仅显示9%的存活率,而在37℃恢复24小时后,存活率为对照的87%。热疗处理对细胞内NAD或ATP的总水平没有可检测到的影响,但导致聚(ADP - 核糖)的细胞含量长时间增加。对这种效应机制的研究表明,热疗引起的聚(ADP - 核糖)代谢的主要改变涉及ADP - 核糖聚合物周转速率的降低。即使存在环己酰亚胺,在37℃恢复期间正常的聚合物周转速率也得以恢复。结果表明,聚(ADP - 核糖)糖苷水解酶活性受热疗可逆性改变。热疗后抑制聚(ADP - 核糖)合成会延迟蛋白质合成正常速率的恢复以及细胞接种和形成集落能力的恢复。