Lommer Barbara S, Ali Shoukath M, Bajpai Saroj N, Brouillette Wayne J, Air Gillian M, Luo Ming
Department of Microbiology, University of Alabama at Birmingham, Birmingham, AL 35294, USA.
Acta Crystallogr D Biol Crystallogr. 2004 Jun;60(Pt 6):1017-23. doi: 10.1107/S0907444904006225. Epub 2004 May 21.
Owing to the highly conserved nature of its active site, Influenza B virus neuraminidase (NA) has emerged as a major target for the design of novel anti-influenza drugs. A benzene-ring scaffold has been used in place of the pyranose ring of sialic acid to develop simpler NA inhibitors that contain a minimal number of chiral centers. A new compound belonging to this series, BANA 207, showed significant improvement in inhibitory activity against Influenza B virus NA compared with its parent compound. Here, the structural analysis of a complex of BANA 207 with influenza virus B/Lee/40 NA is reported. The results indicate that BANA 207 forms an unexpected interaction with the crucial active-site residue Glu275 that stabilizes the side chain of this residue in a conformation previously unobserved in NA-inhibitor complexes. This change in the side-chain orientation of Glu275 alters the topology of the triglycerol pocket, which accommodates an additional lipophilic substitution at the benzene ring and may provide an explanation for the increased activity of BANA 207 against Influenza B virus NA.
由于其活性位点具有高度保守的性质,乙型流感病毒神经氨酸酶(NA)已成为新型抗流感药物设计的主要靶点。已使用苯环支架取代唾液酸的吡喃糖环来开发具有最少手性中心数量的更简单的NA抑制剂。该系列中的一种新化合物BANA 207与其母体化合物相比,对乙型流感病毒NA的抑制活性有显著提高。在此,报道了BANA 207与流感病毒B/Lee/40 NA复合物的结构分析。结果表明,BANA 207与关键活性位点残基Glu275形成了意想不到的相互作用,使该残基的侧链稳定在NA抑制剂复合物中以前未观察到的构象中。Glu275侧链方向的这种变化改变了甘油三酯口袋的拓扑结构,该口袋在苯环处容纳了一个额外的亲脂性取代基,这可能解释了BANA 207对乙型流感病毒NA活性增加的原因。