Mivechi N F, Dewey W C
Radiat Res. 1984 Aug;99(2):352-62.
A whole-cell assay technique for DNA polymerase alpha and beta was used to measure the activities of both enzymes in Chinese hamster ovary (CHO) cells after hyperthermic treatment of 42.2 - 45.5 degrees C in acidic or basic environment and in the presence or absence of 5% glycerol. Cell survival was measured at the same time, and the DNA polymerase activities were correlated with survival. The results show a positive correlation between cell killing by heat and loss of DNA polymerase beta activity, both when cells were sensitized to heat by treatment at pH 6.7 with or without glycerol and when cells were protected from heat by treatment with 5% glycerol at pH 7.4 or 6.7. The results show a poor correlation between loss of DNA polymerase alpha activity and cell survival; i.e., compared to cell killing, the loss of DNA polymerase alpha activity was sensitized to heat more by acidic treatment without glycerol and was protected less from heat by glycerol treatment at normal physiological pH (pH 7.4). However, cell killing and loss of polymerase alpha activity did correlate well for sensitization to heat by acidic treatment in the presence of glycerol and for protection from heat by glycerol treatment at low pH. These results considered with other hyperthermia-polymerase studies suggest that heat effects on membranes can apparently result in changes in environmental conditions within the cell (secondary effects), which can in turn alter polymerase activities and/or the direct or secondary effect of heat on the polymerase enzymes. Furthermore, loss of polymerase beta activity serves as a better index of thermal damage resulting in cell death than loss of alpha activity.
采用全细胞分析技术检测DNA聚合酶α和β的活性,以测定中国仓鼠卵巢(CHO)细胞在42.2 - 45.5摄氏度的高温处理后,于酸性或碱性环境中,以及在有或无5%甘油存在的情况下这两种酶的活性。同时测定细胞存活率,并将DNA聚合酶活性与存活率相关联。结果显示,无论是在pH 6.7条件下用或不用甘油处理使细胞对热敏感,还是在pH 7.4或6.7条件下用5%甘油处理使细胞免受热损伤时,热诱导的细胞杀伤与DNA聚合酶β活性的丧失之间均呈正相关。结果表明,DNA聚合酶α活性的丧失与细胞存活率之间的相关性较差;即与细胞杀伤相比,在无甘油的酸性处理下DNA聚合酶α活性的丧失对热更敏感,而在正常生理pH(pH 7.4)条件下甘油处理对热的保护作用较小。然而,在甘油存在的情况下酸性处理使细胞对热敏感以及在低pH条件下甘油处理使细胞免受热损伤时,细胞杀伤与聚合酶α活性的丧失确实具有良好的相关性。这些结果与其他热疗 - 聚合酶研究一起表明,热对细胞膜的影响显然会导致细胞内环境条件的变化(二次效应),进而可能改变聚合酶活性和/或热对聚合酶酶的直接或二次效应。此外,与α活性的丧失相比,聚合酶β活性的丧失是导致细胞死亡的热损伤的更好指标。