首页> 外文期刊>Journal of Medicinal Chemistry >Potent inhibition of influenza sialidase by a benzoic acid containing a 2-pyrrolidinone substituent.
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Potent inhibition of influenza sialidase by a benzoic acid containing a 2-pyrrolidinone substituent.

机译:含有2-吡咯烷酮取代基的苯甲酸可有效抑制流感病毒唾液酸酶。

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摘要

On the basis of the lead compound 4-(N-acetylamino)-3-guanidinobenzoic acid (BANA 113), which inhibits influenza A sialidase with a Ki of 2.5 microM, several novel aromatic inhibitors of influenza sialidases were designed. In this study the N-acetyl group of BANA 113 was replaced with a 2-pyrrolidinone ring, which was designed in part to offer opportunities for introduction of spatially directed side chains that could potentially interact with the 4-, 5-, and/or 6-subsites of sialidase. While the parent structure 1-(4-carboxy-2-guanidinophenyl)pyrrolidin-2-one (8) was only a modest inhibitor of sialidase, the introduction of a hydroxymethyl or bis(hydroxymethyl) substituent at the C5' position of the 2-pyrrolidinone ring resulted in inhibitors (9 and 12, respectively) with low micromolar activity. Crystal structures of these inhibitors in complex with sialidase demonstrated that the substituents at the 5'-position of the 2-pyrrolidinone ring interact in the 4- and/or 5-subsites of the enzyme. Replacement of the guanidine in 12 with a hydrophobic 3-pentylamino group resulted in a large enhancement in binding to produce an inhibitor (14) with an IC50 of about 50 nM against influenza A sialidase, although the inhibition of influenza B sialidase was 2000-fold less. This represents the first reported example of a simple, achiral benzoic acid with potent (low nanomolar) activity as an inhibitor of influenza sialidase.
机译:基于铅化合物4-(N-乙酰氨基)-3-胍基苯甲酸(BANA 113),其抑制Ki为2.5 microM的甲型流感唾液酸酶,设计了几种新型的流感唾液酸酶芳香抑制剂。在这项研究中,BANA 113的N-乙酰基团被2-吡咯烷酮环取代,该环的部分目的是为引入空间定向的侧链提供可能,该侧链可能与4-,5-和/或-相互作用唾液酸酶的6个亚位点。虽然母体结构1-(4-羧基-2-胍基苯基)吡咯烷-2-(8)只是适度的唾液酸酶抑制剂,但在2的C5'位置引入了羟甲基或双(羟甲基)取代基-吡咯烷酮环产生的微摩尔活性低的抑制剂(分别为9和12)。这些抑制剂与唾液酸酶复合的晶体结构表明2-吡咯烷酮环的5'-位的取代基在酶的4-和/或5-亚位相互作用。用疏水的3-戊基氨基取代12中的胍导致结合力大大增强,从而产生针对甲型流感病毒唾液酸酶的IC50约为50 nM的抑制剂(14),尽管对乙型流感病毒唾液酸酶的抑制作用是2000倍减。这代表了第一个报道的简单的,非手性的苯甲酸,具有作为流感唾液酸酶抑制剂的有效(低纳摩尔)活性。

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