首页> 外文期刊>Antimicrobial agents and chemotherapy. >Mechanism by which mutations at his274 alter sensitivity of influenza a virus n1 neuraminidase to oseltamivir carboxylate and zanamivir.
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Mechanism by which mutations at his274 alter sensitivity of influenza a virus n1 neuraminidase to oseltamivir carboxylate and zanamivir.

机译:his274处的突变通过其改变流感病毒n1神经氨酸酶对奥司他韦羧酸盐和扎那米韦的敏感性的机制。

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摘要

Oseltamivir carboxylate is a potent and specific inhibitor of influenza neuraminidase (NA). An influenza A/H1N1 variant selected in vitro with reduced susceptibility to oseltamivir carboxylate contains a His274Tyr mutation. To understand the mechanism by which a His274Tyr mutation gives rise to drug resistance, we studied a series of NA variant proteins containing various substitutions at position 274. Replacement of His274 with larger side chain residues (Tyr or Phe) reduced the NA sensitivity to oseltamivir carboxylate. In contrast, replacement of His274 with smaller side chain residues (Gly, Asn, Ser, and Gln) resulted in enhanced or unchanged sensitivity to oseltamivir carboxylate. Previous studies have suggested that the slow-binding inhibition of NA by oseltamivir carboxylate is a result of the reorientation of Glu276. Loss of this slow-binding inhibition in the His274Tyr and His274Phe mutant NA but not in His274Asn, His274Gly, His274Ser, or His274Gln supports the conclusion that the conformational change of Glu276 is restricted in the His274Tyr and His274Phe mutant NA upon oseltamivir carboxylate binding. Interestingly, His274Asn, as well as His274Gly, His274Ser, and His274Gln, also displayed reduced sensitivity to zanamivir and its analogue, 4-amino-Neu5Ac2en. Substitution of His274 with Tyr in influenza A/Tokyo/3/67 (H3N2) recombinant NA did not affect the susceptibility to oseltamivir carboxylate. These data indicate that the volume occupied by the amino acid side chain at position 274 can influence the sensitivities of influenza N1 NA but not of N2 NA to both oseltamivir carboxylate and zanamivir.
机译:奥司他韦羧酸盐是一种有效且特异性的流感神经氨酸酶(NA)抑制剂。在体外选择的对奥司他韦羧酸盐敏感性降低的流感A / H1N1变异株包含His274Tyr突变。为了了解His274Tyr突变引起耐药性的机制,我们研究了一系列在274位含有各种取代的NA变异蛋白。用较大的侧链残基(Tyr或Phe)替换His274降低了NA对oseltamivir羧酸盐的敏感性。相比之下,用较小的侧链残基(Gly,Asn,Ser和Gln)替代His274导致对奥司他韦羧酸盐的敏感性增强或不变。先前的研究表明,奥司他韦羧酸盐对NA的缓慢结合抑制是Glu276重新定向的结果。在His274Tyr和His274Phe突变体NA中失去这种缓慢结合抑制作用,但在His274Asn,His274Gly,His274Ser或His274Gln中却没有,这证明了在奥司他韦羧酸酯结合后,Glu276的构象变化在His274Tyr和His274Phe突变体NA中受到限制。有趣的是,His274Asn以及His274Gly,His274Ser和His274Gln也显示出对扎那米韦及其类似物4-氨基-Neu5Ac2en的敏感性降低。在流感A / Tokyo / 3/67(H3N2)重组NA中用Tyr替代His274不会影响对奥司他韦羧酸盐的敏感性。这些数据表明,在位置274处氨基酸侧链占据的体积可影响流感N1 NA而不是N2 NA对奥司他韦羧酸盐和扎那米韦的敏感性。

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