Li Shaoshan, Paulsson Markus, Björn Lars Olof
Department of Plant Physiology, Lund University, Box 117, SE-221 00 Lund, Sweden.
J Photochem Photobiol B. 2002 Feb;66(1):67-72. doi: 10.1016/s1011-1344(01)00277-9.
Two photoproducts of DNA damage, i.e. cyclobutane pyrimidine dimers (CPDs) and 6-4 photoproducts (6-4PPs), induced by UV-B radiation in suspension-cultured tobacco cells were quantified by enzyme-linked immunosorbent assay (ELISA) with monoclonal antibodies. CPDs and 6-4PPs were induced in tobacco cells by UV-B radiation. Photorepair of CPDs was faster than that of 6-4PPs. UV-B radiation induces formation of CPDs and 6-4PPs even at 0 degrees C, but low temperature significantly decreases the UV-B-induced (in contrast to UV-C-induced) formation of CPDs and 6-4PPs. Low temperature also retarded the removal of CPDs and 6-4PPs under white light, and almost no photorepair of CPDs and 6-4PPs was detected at 0 degrees C. When purified DNA from tobacco cells grown in darkness was irradiated with UV-B, formation of CPDs and 6-4PPs took place at the same speed at different temperatures. It indicated that formation of CPDs and 6-4PPs induced by UV-B was temperature-independent in a non-cellular system. Based on our results for suspension-cultured tobacco cells, not only the photorepair but also UV-B-induced formation of CPDs and 6-4PPs are temperature-dependent.
通过酶联免疫吸附测定(ELISA)和单克隆抗体对悬浮培养的烟草细胞中由UV-B辐射诱导产生的两种DNA损伤光产物,即环丁烷嘧啶二聚体(CPD)和6-4光产物(6-4PP)进行了定量分析。UV-B辐射可在烟草细胞中诱导产生CPD和6-4PP。CPD的光修复比6-4PP更快。即使在0℃时,UV-B辐射也能诱导CPD和6-4PP的形成,但低温会显著降低UV-B诱导(与UV-C诱导相反)的CPD和6-4PP的形成。低温还会阻碍白光下CPD和6-4PP的去除,在0℃时几乎检测不到CPD和6-4PP的光修复。当用UV-B照射黑暗中生长的烟草细胞的纯化DNA时,在不同温度下CPD和6-4PP的形成速度相同。这表明在非细胞系统中,UV-B诱导的CPD和6-4PP的形成与温度无关。基于我们对悬浮培养烟草细胞的研究结果,不仅光修复,而且UV-B诱导的CPD和6-4PP的形成都与温度有关。