Suzuki T, Yoshida M, Yamada M, Ide H, Kobayashi M, Kanaori K, Tajima K, Makino K
Institute of Advanced Energy, Kyoto University, Uji, Japan.
Biochemistry. 1998 Aug 18;37(33):11592-8. doi: 10.1021/bi980971f.
2'-Deoxyoxanosine (dOxo) is a novel DNA lesion produced by the reaction of 2'-deoxyguanosine (dGuo) with nitrous acid and nitric oxide [Suzuki, T., Yamaoka, R., Nishi, M., Ide, H., and Makino, K. (1996) J. Am. Chem. Soc. 118, 2515-2516]. In this work, 2'-deoxyoxanosine 5'-triphosphate (dOTP) was prepared by nitrous acid treatment of 2'-deoxyguanosine 5'-triphosphate (dGTP), and its incorporation into DNA by DNA polymerases was investigated to elucidate the substrate and mutagenic properties of dOTP. Primed M13mp18 DNA was replicated by Escherichia coli DNA polymerase I Klenow fragment (Pol I Kf) in the presence of three normal dNTPs and dOTP or 2'-deoxyxanthosine 5'-triphosphate (dXTP), another major product of reaction of dGTP with nitrous acid and nitric oxide. dOTP substituted for dGTP and to a lesser extent for dATP, while dXTP substituted slightly for dGTP but not for dATP. Neither dOTP nor dXTP substituted for dCTP and dTTP. The similar results were obtained for the incorporation by T7 DNA polymerase deficient in 3'-5' exonuclease [T7(exo-)]. To quantify the substitution efficiency, kinetic parameters for incorporation of dOTP and dXTP opposite template C or T by Pol I Kf (exo-) were determined and compared with those for dGTP using oligodeoxynucleotide templates. Incorporation efficiencies (f = Vmax/Km) of dOTP (f = 0.28% min-1 microM-1) and dXTP (f = 0.10% min-1 microM-1) opposite template C were much lower than that of dGTP (f = 1506% min-1 microM-1). Frequencies of mutagenic incorporation of dOTP opposite template T were dependent on the nearest neighbor base pairs, and 1.6-3.9-fold higher than those for dGTP with the nearest neighbors containing G.C pairs. dXTP was not incorporated opposite template T with all four nearest neighbors. These data suggest that formation of dOTP, but not dXTP, from dGTP with nitrous acid or nitric oxide in the intracellular nucleotide pool would result in the elevation of the mutation frequency.
2'-脱氧氧杂鸟苷(dOxo)是2'-脱氧鸟苷(dGuo)与亚硝酸和一氧化氮反应产生的一种新型DNA损伤产物[铃木,T.,山冈,R.,西,M.,井出,H.,以及牧野,K.(1996年)《美国化学会志》118,2515 - 2516]。在本研究中,通过用亚硝酸处理2'-脱氧鸟苷5'-三磷酸(dGTP)制备了2'-脱氧氧杂鸟苷5'-三磷酸(dOTP),并研究了DNA聚合酶将其掺入DNA的情况,以阐明dOTP的底物和诱变特性。在三种正常的脱氧核苷三磷酸(dNTP)以及dOTP或2'-脱氧黄苷5'-三磷酸(dXTP,dGTP与亚硝酸和一氧化氮反应的另一种主要产物)存在的情况下,用大肠杆菌DNA聚合酶I Klenow片段(Pol I Kf)复制带引物的M13mp18 DNA。dOTP取代dGTP,在较小程度上也取代dATP,而dXTP轻微取代dGTP但不取代dATP。dOTP和dXTP都不取代dCTP和dTTP。对于缺乏3'-5'外切核酸酶的T7 DNA聚合酶[T7(exo-)]的掺入情况,也得到了类似的结果。为了量化取代效率,测定了Pol I Kf(exo-)将dOTP和dXTP掺入与模板C或T相对应位置的动力学参数,并使用寡脱氧核苷酸模板将其与dGTP的动力学参数进行比较。与模板C相对应时,dOTP(f = 0.28% min-1 microM-1)和dXTP(f = 0.10% min-1 microM-1)的掺入效率远低于dGTP(f = 1506% min-1 microM-1)。dOTP与模板T相对应时诱变掺入的频率取决于最近邻碱基对,并且比最近邻碱基对包含G.C对的dGTP的诱变掺入频率高1.6 - 3.9倍。对于所有四种最近邻碱基对,dXTP都不与模板T相对应掺入。这些数据表明,在细胞内核苷酸池中,dGTP与亚硝酸或一氧化氮反应形成dOTP而非dXTP会导致突变频率升高。