Smith Brian J, Huyton Trevor, Joosten Robbie P, McKimm-Breschkin Jennifer L, Zhang Jian Guo, Luo Cindy S, Lou Mei Zhen, Labrou Nikolaos E, Garrett Thomas P J
The Walter and Eliza Hall Institute of Medical Research, 1G Royal Parade, Parkville, Victoria 3050, Australia.
Acta Crystallogr D Biol Crystallogr. 2006 Sep;62(Pt 9):947-52. doi: 10.1107/S0907444906020063. Epub 2006 Aug 19.
The X-ray structure of influenza virus neuraminidase (NA) isolated from whale, subtype N9, has been determined at 2.2 A resolution and contains a tetrameric protein in the asymmetric unit. In structures of NA determined previously, a calcium ion is observed to coordinate amino acids near the substrate-binding site. In three of the NA monomers determined here this calcium is absent, resulting in structural alterations near the substrate-binding site. These changes affect the conformation of residues that participate in several key interactions between the enzyme and substrate and provide at a molecular level the basis of the structural and functional role of calcium in substrate and inhibitor binding. Several sulfate ions were identified in complex with the protein. These are located in the active site, occupying the space reserved for the substrate (sialic acid) carboxylate, and in positions leading away from the substrate-binding site. These sites offer a new opportunity for the design of inhibitors of influenza virus NA.
从鲸鱼中分离出的N9亚型流感病毒神经氨酸酶(NA)的X射线结构已在2.2埃分辨率下确定,其不对称单元中包含一个四聚体蛋白。在先前确定的NA结构中,观察到一个钙离子与底物结合位点附近的氨基酸配位。在此确定的三个NA单体中,该钙离子不存在,导致底物结合位点附近的结构改变。这些变化影响了参与酶与底物之间几个关键相互作用的残基的构象,并在分子水平上提供了钙在底物和抑制剂结合中的结构和功能作用的基础。鉴定出几个与该蛋白结合的硫酸根离子。它们位于活性位点,占据为底物(唾液酸)羧酸盐保留的空间,并处于远离底物结合位点的位置。这些位点为设计流感病毒NA抑制剂提供了新的机会。