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新型抗病毒 C5-取代嘧啶无环核苷膦酸类化合物被选为人类胸苷酸激酶的底物。

Novel antiviral C5-substituted pyrimidine acyclic nucleoside phosphonates selected as human thymidylate kinase substrates.

机构信息

Groupe d'Enzymologie Moléculaire et Fonctionnelle, UR4-UPMC, Université Pierre et Marie Curie, Sorbonne Universités, Paris, France.

出版信息

J Med Chem. 2011 Jan 13;54(1):222-32. doi: 10.1021/jm1011462. Epub 2010 Dec 3.

Abstract

Acyclic nucleoside phosphonates (ANPs) are at the cornerstone of DNA virus and retrovirus therapies. They reach their target, the viral DNA polymerase, after two phosphorylation steps catalyzed by cellular kinases. New pyrimidine ANPs have been synthesized with unsaturated acyclic side chains (prop-2-enyl-, but-2-enyl-, pent-2-enyl-) and different substituents at the C5 position of the uracil nucleobase. Several derivatives in the but-2-enyl- series 9d and 9e, with (E) but not with (Z) configuration, were efficient substrates for human thymidine monophosphate (TMP) kinase, but not for uridine monophosphate-cytosine monophosphate (UMP-CMP) kinase, which is in contrast to cidofovir. Human TMP kinase was successfully crystallized in a complex with phosphorylated (E)-thymidine-but-2-enyl phosphonate 9e and ADP. The bis-pivaloyloxymethyl (POM) esters of (E)-9d and (E)-9e were synthesized and shown to exert activity against herpes virus in vitro (IC(50) = 3 μM) and against varicella zoster virus in vitro (IC(50) = 0.19 μM), in contrast to the corresponding inactive (Z) derivatives. Thus, their antiviral activity correlates with their ability to act as thymidylate kinase substrates.

摘要

无环核苷膦酸酯(ANPs)是 DNA 病毒和逆转录病毒治疗的基础。它们在细胞激酶催化的两步磷酸化作用后,到达其靶标,即病毒 DNA 聚合酶。已经合成了具有不饱和无环侧链(丙烯基、丁烯基、戊烯基)和尿嘧啶核苷碱基 C5 位置上不同取代基的新型嘧啶 ANPs。丁烯基系列 9d 和 9e 的几个衍生物(E)构型而非(Z)构型,是人类胸苷一磷酸(TMP)激酶的有效底物,但不是尿苷一磷酸-胞苷一磷酸(UMP-CMP)激酶的底物,这与更昔洛韦不同。人类 TMP 激酶与磷酸化(E)-胸苷-丁烯基膦酸酯 9e 和 ADP 的复合物成功结晶。(E)-9d 和(E)-9e 的双特戊酰氧基甲基(POM)酯已被合成,并显示出对体外疱疹病毒(IC(50)=3μM)和体外水痘带状疱疹病毒(IC(50)=0.19μM)的活性,而相应的(Z)衍生物则没有活性。因此,它们的抗病毒活性与其作为胸苷酸激酶底物的能力相关。

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