首页> 美国卫生研究院文献>Journal of Virology >Amino Acid Changes within Conserved Region III of the Herpes Simplex Virus and Human Cytomegalovirus DNA Polymerases Confer Resistance to 4-Oxo-Dihydroquinolines a Novel Class of Herpesvirus Antiviral Agents
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Amino Acid Changes within Conserved Region III of the Herpes Simplex Virus and Human Cytomegalovirus DNA Polymerases Confer Resistance to 4-Oxo-Dihydroquinolines a Novel Class of Herpesvirus Antiviral Agents

机译:单纯疱疹病毒和人类巨细胞病毒DNA聚合酶的保守区III内的氨基酸变化赋予对4-氧代-二氢喹啉的抵抗力这是一类新型的疱疹病毒抗病毒剂

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摘要

The 4-oxo-dihydroquinolines (PNU-182171 and PNU-183792) are nonnucleoside inhibitors of herpesvirus polymerases (R. J. Brideau et al., Antiviral Res. 54:19-28, 2002; N. L. Oien et al., Antimicrob. Agents Chemother. 46:724-730, 2002). In cell culture these compounds inhibit herpes simplex virus type 1 (HSV-1), HSV-2, human cytomegalovirus (HCMV), varicella-zoster virus (VZV), and human herpesvirus 8 (HHV-8) replication. HSV-1 and HSV-2 mutants resistant to these drugs were isolated and the resistance mutation was mapped to the DNA polymerase gene. Drug resistance correlated with a point mutation in conserved domain III that resulted in a V823A change in the HSV-1 or the equivalent amino acid in the HSV-2 DNA polymerase. Resistance of HCMV was also found to correlate with amino acid changes in conserved domain III (V823A+V824L). V823 is conserved in the DNA polymerases of six (HSV-1, HSV-2, HCMV, VZV, Epstein-Barr virus, and HHV-8) of the eight human herpesviruses; the HHV-6 and HHV-7 polymerases contain an alanine at this amino acid. In vitro polymerase assays demonstrated that HSV-1, HSV-2, HCMV, VZV, and HHV-8 polymerases were inhibited by PNU-183792, whereas the HHV-6 polymerase was not. Changing this amino acid from valine to alanine in the HSV-1, HCMV, and HHV-8 polymerases alters the polymerase activity so that it is less sensitive to drug inhibition. In contrast, changing the equivalent amino acid in the HHV-6 polymerase from alanine to valine alters polymerase activity so that PNU-183792 inhibits this enzyme. The HSV-1, HSV-2, and HCMV drug-resistant mutants were not altered in their susceptibilities to nucleoside analogs; in fact, some of the mutants were hypersensitive to several of the drugs. These results support a mechanism where PNU-183792 inhibits herpesviruses by interacting with a binding determinant on the viral DNA polymerase that is less important for the binding of nucleoside analogs and deoxynucleoside triphosphates.
机译:4-氧代二氢喹啉(PNU-182171和PNU-183792)是疱疹病毒聚合酶的非核苷抑制剂(RJ Brideau等人,Antiviral Res。54:19-28,2002; NL Oien等人,Antimicrob.Agents Chemother。 46:724-730,2002)。在细胞培养中,这些化合物抑制1型单纯疱疹病毒(HSV-1),HSV-2,人巨细胞病毒(HCMV),水痘带状疱疹病毒(VZV)和人疱疹病毒8(HHV-8)复制。分离出对这些药物具有抗性的HSV-1和HSV-2突变体,并将抗性突变定位到DNA聚合酶基因上。耐药性与保守结构域III中的点突变相关,该突变导致HSV-1或HSV-2 DNA聚合酶中的等效氨基酸发生V823A改变。还发现HCMV的抗性与保守结构域III(V823A + V824L)中的氨基酸变化相关。 V823在八种人类疱疹病毒的六种(HSV-1,HSV-2,HCMV,VZV,爱泼斯坦-巴尔病毒和HHV-8)的DNA聚合酶中保守; HHV-6和HHV-7聚合酶在该氨基酸上含有丙氨酸。体外聚合酶分析表明,PNU-183792抑制HSV-1,HSV-2,HCMV,VZV和HHV-8聚合酶,而HHV-6聚合酶则不受PNU-183792的抑制。在HSV-1,HCMV和HHV-8聚合酶中将此氨基酸从缬氨酸更改为丙氨酸会改变聚合酶活性,因此对药物抑制较不敏感。相反,将HHV-6聚合酶中的等效氨基酸从丙氨酸更改为缬氨酸会改变聚合酶活性,因此PNU-183792会抑制该酶。 HSV-1,HSV-2和HCMV耐药突变体对核苷类似物的敏感性没有改变。实际上,某些突变体对几种药物都非常敏感。这些结果支持了一种机制,其中PNU-183792通过与病毒DNA聚合酶上的结合决定簇相互作用而抑制疱疹病毒,该结合决定簇对于结合核苷类似物和脱氧核苷三磷酸不太重要。

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