Kusewitt D F, Budge C L, Nolla H A, Edwards B S, Ley R D
Center for Photomedicine, Lovelace Medical Foundation, Albuquerque, NM 87108.
Mutat Res. 1992 Sep;274(3):163-76. doi: 10.1016/0921-8777(92)90063-9.
Repair-proficient murine fibroblasts transfected with the denV gene of bacteriophage T4 repaired 70-80% of pyrimidine dimers within 24 h after exposure to 150 J/m2 ultraviolet radiation (UVR) from an FS-40 sunlamp. Under the same conditions, control cells repaired only about 20% of UVR-induced pyrimidine dimers. After UVR exposure, both control and denV-transfected cells exhibited some degree of DNA-synthesis inhibition, as determined by flow cytometric analysis of cell-cycle kinetics in propidium iodide-stained cells. DenV-transfected cells had a longer and more profound S phase arrest than control cells, but both control and denV-transfected cells had largely recovered from UVR effects on cell-cycle kinetics by 48 h after UVR exposure. Inhibition of DNA synthesis by UVR was also measured by determining post-UVR incorporation of bromodeoxyuridine (BrdU). The amount of BrdU incorporated was quantitated by determining with flow cytometry the quenching of Hoechst dye 33342 by BrdU incorporated in cellular DNA. DenV-transfected cells showed more marked inhibition of BrdU incorporation after low fluences of UVR than control cells. Differences between denV-transfected and control cells in cell-cycle kinetics following UVR exposure may be related to differences in mechanisms of repair when excision repair of pyrimidine dimers is initiated by endonuclease V instead of cellular repair enzymes.
用噬菌体T4的denV基因转染的具有修复能力的小鼠成纤维细胞,在暴露于FS - 40太阳灯发出的150 J/m2紫外线辐射(UVR)后24小时内修复了70 - 80%的嘧啶二聚体。在相同条件下,对照细胞仅修复了约20%的UVR诱导的嘧啶二聚体。UVR暴露后,通过对碘化丙啶染色细胞的细胞周期动力学进行流式细胞术分析确定,对照细胞和denV转染细胞均表现出一定程度的DNA合成抑制。与对照细胞相比,denV转染细胞的S期阻滞时间更长且更明显,但在UVR暴露后48小时,对照细胞和denV转染细胞在很大程度上已从UVR对细胞周期动力学的影响中恢复。通过测定UVR后溴脱氧尿苷(BrdU)的掺入情况也可衡量UVR对DNA合成的抑制作用。通过流式细胞术测定细胞DNA中掺入的BrdU对Hoechst染料33342的淬灭作用来定量掺入的BrdU量。与对照细胞相比,低剂量UVR照射后,denV转染细胞的BrdU掺入受到更明显的抑制。UVR暴露后,denV转染细胞和对照细胞在细胞周期动力学上的差异可能与嘧啶二聚体切除修复由核酸内切酶V而非细胞修复酶启动时修复机制的差异有关。