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无环鸟苷膦酸酯(R,S)-HPMPG的广谱抗病毒活性。

Broad-spectrum antiviral activity of the acyclic guanosine phosphonate (R,S)-HPMPG.

作者信息

Terry B J, Mazina K E, Tuomari A V, Haffey M L, Hagen M, Feldman A, Slusarchyk W A, Young M G, Zahler R, Field A K

机构信息

Microbial Biochemistry, Squibb Institute for Medical Research, Princeton, New Jersey 08540.

出版信息

Antiviral Res. 1988 Dec 1;10(4-5):235-51. doi: 10.1016/0166-3542(88)90034-4.

DOI:10.1016/0166-3542(88)90034-4
PMID:2852486
Abstract

(R,S)-9-(3-hydroxy-2-phosphonomethoxypropyl)guanine [(R,S)-HPMPG] exhibits broad spectrum antiviral activity with an ED50 of less than 1 microM against herpes simplex virus (HSV) types 1 and 2, varicella zoster virus, human cytomegalovirus (HCMV) and vaccinia in plaque reduction assays. Wild type HSV-2 and its thymidine kinase deficient variant are equally sensitive to (R,S)-HPMPG. (R,S)-HPMPG is 100-fold more potent than acyclovir (ED50 = 0.45 microM vs. 44 microM, respectively) against HCMV in cell culture, and 10-fold more active than acyclovir in extending survival time in mice intraperitoneally infected with 70 LD50 HSV-1. However, (R,S)-HPMPG is toxic when administered repeatedly at 44 mg/kg/day in uninfected adult mice. The diphosphoryl derivative of HPMPG was enzymatically synthesized and is a competitive inhibitor of HSV-1 DNA polymerase relative to dGTP (K1 = 0.03 microM). HPMPG-PP is 70-fold less active at inhibiting HeLa DNA polymerase alpha than HSV-1 DNA polymerase. At concentrations between 0.3 and 1.5 microM (R,S)-HPMPG inhibited HSV-1 DNA replication greater than or equal to 50% in infected cells as measured by nucleic acid hybridization. Consistent with inhibition of viral DNA synthesis, 6 to 30 microM (R,S)-HPMPG reduces late viral polypeptide synthesis in HSV-1 infected cells. These data indicate that (R,S)-HPMPG is a thymidine kinase independent broad spectrum antiviral drug which is capable of inhibiting viral DNA polymerase.

摘要

(R,S)-9-(3-羟基-2-膦酰甲氧基丙基)鸟嘌呤[(R,S)-HPMPG]在蚀斑减少试验中表现出广谱抗病毒活性,对1型和2型单纯疱疹病毒(HSV)、水痘带状疱疹病毒、人巨细胞病毒(HCMV)和痘苗病毒的半数有效剂量(ED50)小于1微摩尔。野生型HSV-2及其胸苷激酶缺陷变体对(R,S)-HPMPG同样敏感。在细胞培养中,(R,S)-HPMPG对HCMV的效力比阿昔洛韦高100倍(ED50分别为0.45微摩尔和44微摩尔),在腹腔感染70个半数致死量HSV-1的小鼠中,其延长存活时间的活性比阿昔洛韦高10倍。然而,在未感染的成年小鼠中,以44毫克/千克/天的剂量重复给药时,(R,S)-HPMPG具有毒性。HPMPG的二磷酸衍生物通过酶促合成,相对于dGTP,它是HSV-1 DNA聚合酶的竞争性抑制剂(K1 = 0.03微摩尔)。HPMPG-PP抑制HeLa DNA聚合酶α的活性比抑制HSV-1 DNA聚合酶的活性低70倍。通过核酸杂交检测,在0.3至1.5微摩尔的浓度下,(R,S)-HPMPG在感染细胞中抑制HSV-1 DNA复制的程度大于或等于50%。与病毒DNA合成的抑制一致,6至30微摩尔的(R,S)-HPMPG可减少HSV-1感染细胞中晚期病毒多肽的合成。这些数据表明,(R,S)-HPMPG是一种不依赖胸苷激酶的广谱抗病毒药物,能够抑制病毒DNA聚合酶。

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