Parker W B, Shaddix S C, Allan P W, Arnett G, Rose L M, Shannon W M, Shealy Y F, Montgomery J A, Secrist J A, Bennett L L
Kettering-Meyer Laboratory, Southern Research Institute, Birmingham, Alabama 35205.
Mol Pharmacol. 1992 Feb;41(2):245-51.
The carbocyclic analog of 2'-deoxyguanosine (CdG) is active against herpes simplex virus (HSV), human cytomegalovirus, and human hepatitis-B virus. In order to understand the mechanism of action of this compound against HSV, we have evaluated (a) the incorporation of [3H]CdG into viral and host DNA in HEp-2 cells infected with HSV and (b) the interaction of the 5'-triphosphate of CdG (CdG-TP) with the HSV DNA polymerase and human DNA polymerases alpha, beta, and gamma (EC 2.7.7.7). Incubation of HSV-1-infected HEp-2 cells with [3H]CdG resulted in the incorporation of CdG into both the HSV and the host cell DNA. These results indicated that CdG-TP was used as a substrate for HSV DNA polymerase and for at least one of the cellular DNA polymerases. Degradation of both viral and host DNA with micrococcal nuclease and spleen phosphodiesterase indicated that CdG was incorporated primarily into internal positions in both DNAs. The viral DNA containing CdG sedimented in neutral and alkaline sucrose gradients in the same way as did viral DNA labeled with [3H]thymidine, indicating that the HSV DNA containing CdG was similar in size to untreated HSV DNA. CdG-TP was a competitive inhibitor of the incorporation of dGTP into DNA by the HSV DNA polymerase (Ki of 0.35 microM) and the human DNA polymerase alpha (Ki of 1 microM). CdG-TP was not a potent inhibitor of either DNA polymerase beta or gamma. Using DNA-sequencing technology, CdG-TP was found to be an efficient substrate for HSV DNA polymerase. Incorporation of CdG monophosphate (CdG-MP) into the DNA by HSV DNA polymerase did not interfere with subsequent chain extension. These results suggested that the antiviral activity of CdG was due to its incorporation into the DNA and subsequent disruption of viral functions. In contrast, CdG-TP was not as good as dGTP as a substrate for DNA synthesis by DNA polymerase alpha, and incorporation of CdG-MP by DNA polymerase alpha inhibited further DNA chain elongation.
2'-脱氧鸟苷(CdG)的碳环类似物对单纯疱疹病毒(HSV)、人巨细胞病毒和人乙型肝炎病毒具有活性。为了了解该化合物对HSV的作用机制,我们评估了:(a)在感染HSV的HEp-2细胞中[3H]CdG掺入病毒和宿主DNA的情况;(b)CdG的5'-三磷酸(CdG-TP)与HSV DNA聚合酶以及人DNA聚合酶α、β和γ(EC 2.7.7.7)的相互作用。用[3H]CdG孵育感染HSV-1的HEp-2细胞导致CdG掺入HSV和宿主细胞DNA中。这些结果表明CdG-TP被用作HSV DNA聚合酶和至少一种细胞DNA聚合酶的底物。用微球菌核酸酶和脾磷酸二酯酶降解病毒和宿主DNA表明,CdG主要掺入两种DNA的内部位置。含有CdG的病毒DNA在中性和碱性蔗糖梯度中的沉降方式与用[3H]胸苷标记的病毒DNA相同,表明含有CdG的HSV DNA大小与未处理的HSV DNA相似。CdG-TP是HSV DNA聚合酶(Ki为0.35 microM)和人DNA聚合酶α(Ki为1 microM)将dGTP掺入DNA的竞争性抑制剂。CdG-TP不是DNA聚合酶β或γ的有效抑制剂。使用DNA测序技术,发现CdG-TP是HSV DNA聚合酶的有效底物。HSV DNA聚合酶将CdG单磷酸(CdG-MP)掺入DNA中并不干扰随后的链延伸。这些结果表明CdG的抗病毒活性是由于其掺入DNA并随后破坏病毒功能。相比之下,CdG-TP作为DNA聚合酶α进行DNA合成的底物不如dGTP,并且DNA聚合酶α掺入CdG-MP会抑制进一步的DNA链延伸。