Misra V, Klamut H J, Rauth A M
Department of Medical Biophysics, University of Toronto, Ontario Cancer Institute, Canada.
Br J Cancer. 1998 Apr;77(8):1236-40. doi: 10.1038/bjc.1998.208.
DT-diaphorase, a homodimeric flavoenzyme, can provide for a defence mechanism against carcinogenesis mediated by dietary or environmental quinones as well as bioactivate quinone-containing chemotherapeutic drugs. Human cell lines and strains have been identified with very low or undetectable enzymatic activity and a C to T transition at nucleotide 609 of the DT-diaphorase cDNA. This single base change is predicted to result in a proline to serine change in amino acid 187. Human cells homozygous for this base transition fail to exhibit Western blot reactivity for DT-diaphorase, suggesting that this substitution results in protein instability. To directly test whether this base change affects DT-diaphorase enzymatic activity and/or protein stability in vivo, mammalian expression vectors containing DT-diaphorase cDNA with or without the nucleotide 609 base transition were transiently transfected in COS-1 cells. Co-transfection with a human growth hormone expression vector allowed normalization for transfection efficiency. COS-1 transfectants expressing the C to T base change displayed at least a tenfold reduction in DT-diaphorase activity (P < 0.001) and a two- to threefold reduction in protein levels compared with wild-type transfectants. These results are the first to detect the presence of DT-diaphorase protein coded for by the 609 base transition in mammalian cells and confirm its predicted reduced enzymatic activity.
DT-黄递酶是一种同二聚体黄素酶,它可以为抵御由饮食或环境醌介导的致癌作用提供一种防御机制,同时还能对含醌的化疗药物进行生物活化。已鉴定出人类细胞系和菌株的DT-黄递酶活性非常低或无法检测到,并且在DT-黄递酶cDNA的第609位核苷酸处存在C到T的转变。预计这种单碱基变化会导致第187位氨基酸由脯氨酸变为丝氨酸。对于这种碱基转变纯合的人类细胞未能在蛋白质印迹中显示出DT-黄递酶的反应性,这表明这种取代导致蛋白质不稳定。为了直接测试这种碱基变化是否会影响体内DT-黄递酶的酶活性和/或蛋白质稳定性,将含有有或无第609位核苷酸碱基转变的DT-黄递酶cDNA的哺乳动物表达载体瞬时转染到COS-1细胞中。与人生长激素表达载体共转染可使转染效率标准化。与野生型转染子相比,表达C到T碱基变化的COS-1转染子的DT-黄递酶活性至少降低了十倍(P < 0.001),蛋白质水平降低了两到三倍。这些结果首次检测到哺乳动物细胞中由第609位碱基转变编码的DT-黄递酶蛋白的存在,并证实了其预测的酶活性降低。