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Ring Substituent Effects on Biological Activity of Vinyl Sulfones as Inhibitors of HIV-1

机译:环取代基对乙烯基砜作为HIV-1抑制剂的生物活性的影响

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摘要

In a previous study, we prepared a small library of chicoric acid analogs that possessed both potent anti-integrase and antiviral activity. It was also shown that active compounds fell into one of two groups: those that inhibited an early stage in viral replication and those that inhibited at a later stage. In this study, a series of vinyl geminal disulfone-containing compounds possessing a range of ring substituents has been synthesized to probe the impact of structure on inhibitory mechanisms. Four active compounds were identified using HIV drug susceptibility assays. Three of the inhibitors possessing either no substituents or electron withdrawing substituents on the aromatic rings led to high levels of cytotoxicity and antiviral activity. Intrigued by the potential implications of electronic effects on activity, we probed whether the active compounds could be nonspecifically reacting via 1,4-addition. To investigate this hypothesis, the compounds were incubated with glutathione and upon LC/MS analysis, molecular ion peaks corresponding to both mono and double addition adducts were identified. Secondly, we synthesized analogs lacking the ability to participate in 1,4-addition and tested them for antiviral activity and cytotoxicity and found the compounds inactive for both activities. Taken together, the studies reported herein suggest that compounds lacking electron donating substituents on the aromatic ring are promiscuous acceptors of biological nucleophiles, whereas compounds possessing electron donating substituents seem to resist addition or at least be more selective and significantly less toxic.
机译:在先前的研究中,我们准备了一个小栗子酸类似物文库,该文库具有强大的抗整合酶和抗病毒活性。还显示出活性化合物分为两组之一:抑制病毒复制早期的化合物和抑制病毒复制的化合物。在这项研究中,已经合成了一系列具有一系列环取代基的含乙烯基双膦二砜的化合物,以探讨结构对抑制机理的影响。使用HIV药物敏感性分析鉴定了四种活性化合物。芳香环上没有取代基或吸电子取代基的三种抑制剂导致高水平的细胞毒性和抗病毒活性。对电子作用对活性的潜在影响感兴趣,我们探讨了活性化合物是否可以通过1,4-加成发生非特异性反应。为了研究该假设,将化合物与谷胱甘肽一起孵育,并通过LC / MS分析,鉴定了与单加成和双加成加合物相对应的分子离子峰。其次,我们合成了缺乏参与1,4-加成能力的类似物,并测试了它们的抗病毒活性和细胞毒性,发现该化合物对这两种活性均无活性。综上所述,本文报道的研究表明,在芳环上缺乏给电子取代基的化合物是生物亲核试剂的混杂受体,而具有给电子取代基的化合物似乎具有抗加成性或至少具有更高的选择性和更低的毒性。

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