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Novel sialic acid derivatives lock open the 150-loop of an influenza A virus group-1 sialidase

机译:新型唾液酸衍生物可锁定A型流感病毒1类唾液酸酶的150环

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Influenza virus sialidase has an essential role in the virus' life cycle. Two distinct groups of influenza A virus sialidases have been established, that differ in the flexibility of the '150-loop', providing a more open active site in the apo form of the group-1 compared to group-2 enzymes. In this study we show, through a multidisciplinary approach, that novel sialic acid-based derivatives can exploit this structural difference and selectively inhibit the activity of group-1 sialidases. We also demonstrate that group-1 sialidases from drug-resistant mutant influenza viruses are sensitive to these designed compounds. Moreover, we have determined, by protein X-ray crystallography, that these inhibitors lock open the group-1 sialidase flexible 150-loop, in agreement with our molecular modelling prediction. This is the first direct proof that compounds may be developed to selectively target the pandemic A/H1N1, avian A/H5N1 and other group-1 sialidase-containing viruses, based on an open 150-loop conformation of the enzyme.. ? 2010 Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved.
机译:流感病毒唾液酸酶在病毒的生命周期中起着至关重要的作用。已经建立了两个不同的甲型流感病毒唾液酸酶组,它们在“ 150环”的灵活性方面有所不同,与第2组酶相比,在第1组的载脂蛋白形式中提供了更开放的活性位点。在这项研究中,我们表明,通过多学科的方法,新的基于唾液酸的衍生物可以利用这种结构差异并选择性地抑制第1组唾液酸酶的活性。我们还证明,来自耐药突变型流感病毒的第1组唾液酸酶对这些设计的化合物敏感。此外,我们已经通过蛋白质X射线晶体学确定,这些抑制剂与我们的分子模型预测相符,可以锁定打开第1组唾液酸酶柔性150环。这是第一个直接证据,表明该化合物可以基于酶的开环150环构象来开发,以选择性地靶向大流行性A / H1N1,禽类A / H5N1和其他含第1组唾液酸酶的病毒。 2010 Nature Publishing Group,Macmillan Publishers Limited的子公司。版权所有。

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