Shibutani S, Margulis L A, Geacintov N E, Grollman A P
Department of Pharmacological Sciences, State University of New York, Stony Brook 11794-8651.
Biochemistry. 1993 Jul 27;32(29):7531-41. doi: 10.1021/bi00080a027.
Oligodeoxynucleotides modified site-specifically with dG-(+)-trans- and dG-(+)-cis-anti-BPDE (7,8-dihydroxy-9,10-epoxy-7,8,9,10-tetrahydrobenzo[a]pyrene) or dG-(-)-trans- and dG-(-)-cis-anti-BPDE were used as templates in primer extension reactions catalyzed by the Klenow fragment of Escherichia coli DNA polymerase I. The primer could be extended past the dG-(-)-trans-BPDE adduct with small amounts of dAMP incorporated opposite the lesion. A small amount of base deletions was also observed while, with the dG-(-)-cis-BPDE adduct, one- and two-base deletions predominated. When templates containing dG-(+)-trans-BPDE were used, small amounts of products containing one-base deletions were observed; with dG-(+)-cis-BPDE, substitution of dAMP opposite the lesion was also detected. The frequency of nucleotide insertion for dAMP opposite dG-(-)-trans-BPDE and the frequency of extension from the primer terminus containing the dA:dG-(-)-trans-BPDE pair were much higher than those observed with the other, stereochemically different BPDE adducts. Kinetic studies were in agreement with the results of the primer extension study. When the base flanking the 5' side of dG-BPDE was changed from dC to dT, the frequency of one-base deletions increased. We conclude that the trans- or cis-addition product of dG-(-)-anti-BPDE has a higher miscoding potential than dG-(+)-anti-BPDE in our model system and that G-->T transversions and deletions predominate. These observations are consistent with the types of mutations observed in vivo.
用dG-(+)-反式和顺式-抗BPDE(7,8-二羟基-9,10-环氧-7,8,9,10-四氢苯并[a]芘)或dG-(-)-反式和顺式-抗BPDE位点特异性修饰的寡脱氧核苷酸作为模板,用于大肠杆菌DNA聚合酶I的Klenow片段催化的引物延伸反应。引物可以延伸越过dG-(-)-反式-BPDE加合物,在损伤对面掺入少量dAMP。同时也观察到少量碱基缺失,而对于dG-(-)-顺式-BPDE加合物,单碱基和双碱基缺失占主导。当使用含有dG-(+)-反式-BPDE的模板时,观察到少量含有单碱基缺失的产物;对于dG-(+)-顺式-BPDE,也检测到损伤对面dAMP的取代。dG-(-)-反式-BPDE对面dAMP的核苷酸插入频率以及从含有dA:dG-(-)-反式-BPDE对的引物末端延伸的频率远高于其他立体化学不同的BPDE加合物。动力学研究与引物延伸研究的结果一致。当dG-BPDE 5'侧的侧翼碱基从dC变为dT时,单碱基缺失的频率增加。我们得出结论,在我们的模型系统中,dG-(-)-抗BPDE的反式或顺式加成产物比dG-(+)-抗BPDE具有更高的错配编码潜力,并且G→T颠换和缺失占主导。这些观察结果与体内观察到的突变类型一致。