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A molecular mechanism for the low‐pH stability of sialidase activity of influenza A virus N2 neuraminidases

机译:甲型流感病毒N2神经氨酸酶唾液酸酶活性低pH稳定性的分子机制

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>Four human pandemic influenza A virus strains isolated in 1957 and 1968, but not most of the epidemic strains isolated after 1968, possess sialidase activity under low-pH conditions. Here, we used cell-expressed neuraminidases (NAs) to determine the region of the N2 NA that is associated with low-pH stability of sialidase activity. We found that consensus amino acid regions responsible for low-pH stability did not exist in pandemic NAs but that two amino acid substitutions in the low-pH-stable A/Hong Kong/1/68 (H3N2) NA and a single substitution in the low-pH-unstable A/Texas/68 (H2N2) NA resulted in significant change in low-pH stability.
机译:>在1957年和1968年分离出的四种人类大流行性甲型流感病毒株,但不是大多数在1968年以后分离出的流行性株,在低pH条件下都具有唾液酸酶活性。在这里,我们使用细胞表达的神经氨酸酶(NAs)来确定与唾液酸酶活性的低pH稳定性相关的N2 NA区域。我们发现,在大流行的NA中不存在负责低pH稳定性的共有氨基酸区域,但是在低pH稳定的A / Hong Kong / 1/68(H3N2)NA中存在两个氨基酸取代,而在低pH稳定的A / Hong Kong / 1/68(H3N2)NA中没有一个氨基酸取代。低pH不稳定的A / Texas / 68(H2N2)NA导致低pH稳定性发生重大变化。

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