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无环核苷三磷酸类似物(S)-HPMPApp对腺病毒DNA复制的抑制机制:腺病毒DNA结合蛋白的影响

Mechanism of inhibition of adenovirus DNA replication by the acyclic nucleoside triphosphate analogue (S)-HPMPApp: influence of the adenovirus DNA binding protein.

作者信息

Mul Y M, van Miltenburg R T, De Clercq E, van der Vliet P C

机构信息

Laboratory for Physiological Chemistry, University of Utrecht, The Netherlands.

出版信息

Nucleic Acids Res. 1989 Nov 25;17(22):8917-29. doi: 10.1093/nar/17.22.8917.

Abstract

The acyclic adenosine analogue (S)-9-(3-hydroxy-2-phosphonylmethoxypropyl)adenine [S]-HPMPA) is a potent and selective inhibitor of adenovirus (Ad) replication in cell culture. We studied the mechanism of inhibition using a reconstituted in vitro DNA replication system. The diphosphoryl derivative (S)-HPMPApp, but not (S)-HPMPA, inhibited the DNA replication of origin containing fragments strongly. The inhibitory effect was exerted at the level of elongation, while initiation was resistant to the drug. Remarkably, the elongation of short strands was only slightly impaired, while inhibition was maximal upon synthesis of long DNA fragments. (S)-HPMPApp appeared to be competitive with dATP, suggesting that the Ad DNA polymerase is the prime target for the drug. We purified the Ad DNA polymerase in complex to the precursor terminal protein to homogeneity from cells infected with overproducing recombinant vaccinia viruses. Employing gapped DNA or poly(dT).oligo(dA) templates, only a weak inhibition was observed. However, inhibition was strongly enhanced in the presence of the adenovirus DNA binding protein (DBP). We interpret this to mean that the increased processivity of the polymerization reaction in the presence of DBP leads to increased drug sensitivity.

摘要

无环腺苷类似物(S)-9-(3-羟基-2-膦酰甲氧基丙基)腺嘌呤[S]-HPMPA)是细胞培养中腺病毒(Ad)复制的有效且选择性抑制剂。我们使用重组体外DNA复制系统研究了其抑制机制。二磷酸衍生物(S)-HPMPApp而非(S)-HPMPA强烈抑制含起始位点片段的DNA复制。抑制作用在延伸水平发挥,而起始对该药物有抗性。值得注意的是,短链的延伸仅略有受损,而在长DNA片段合成时抑制作用最大。(S)-HPMPApp似乎与dATP竞争,表明腺病毒DNA聚合酶是该药物的主要作用靶点。我们从感染过量表达重组痘苗病毒的细胞中纯化了与前体末端蛋白形成复合物的腺病毒DNA聚合酶至均一性。使用缺口DNA或聚(dT)·寡聚(dA)模板时,仅观察到微弱的抑制作用。然而,在腺病毒DNA结合蛋白(DBP)存在下抑制作用显著增强。我们将此解释为在DBP存在下聚合反应的持续合成能力增加导致药物敏感性增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b62b/335103/ef21b6f1af57/nar00139-0022-a.jpg

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