Avian Influenza Group, Microbial Containment Complex, ICMR-National Institute of Virology, Pune, India.
Avian Influenza Group, Microbial Containment Complex, ICMR-National Institute of Virology, Pune, India.
Virus Res. 2019 May;265:122-126. doi: 10.1016/j.virusres.2019.03.019. Epub 2019 Mar 22.
Identification of amino-acid substitutions in the neuraminidase (NA) of low-pathogenic avian influenza (AI) H9N2 viruses is important to study the susceptibility to NA inhibitors (NAI). To identify mutations under NAI selective pressure, the virus was serially passaged with increasing levels of either oseltamivir or zanamivir in ovo, and the growth of the viruses in the presence and absence of NAI's compared. Mutations R292 K in the presence of oseltamivir and E119D in presence of zanamivir were observed within passage one and two respectively. The R292 K mutation reduced oseltamivir susceptibility significantly (2,523-fold) and moderately reduced susceptibility to zanamivir. The E119D mutation significantly reduced susceptibility to zanamivir (415-fold) and remained susceptible to oseltamivir. Genetic stability of the mutations assessed by serial passages of the mutant viruses in eggs without drug pressure resulted in the loss of these mutations, making the virus susceptible to both the drugs. Molecular modeling and dynamics simulations revealed that the R292 K mutation disrupted oseltamivir binding similar to other group 2 NAs, while a different mechanism was noted for zanamivir binding for both R292 K and E119D mutations. The study highlights the need for regular susceptibility screening of circulating AI viruses.
鉴定低致病性禽流感(AI)H9N2 病毒神经氨酸酶(NA)中的氨基酸取代对于研究 NA 抑制剂(NAI)的易感性非常重要。为了鉴定 NAI 选择压力下的突变,通过在鸡胚中连续传代增加奥司他韦或扎那米韦的水平来鉴定病毒,比较病毒在存在和不存在 NAI 时的生长情况。在奥司他韦存在的情况下观察到 R292K 突变,在扎那米韦存在的情况下观察到 E119D 突变,分别在传代 1 和 2 中观察到。R292K 突变使奥司他韦的敏感性显著降低(2523 倍),并适度降低对扎那米韦的敏感性。E119D 突变使扎那米韦的敏感性显著降低(415 倍),但对奥司他韦仍敏感。通过在没有药物压力的鸡胚中连续传代突变病毒来评估突变的遗传稳定性,导致这些突变丢失,使病毒对两种药物均敏感。分子建模和动力学模拟表明,R292K 突变破坏了奥司他韦的结合,类似于其他组 2 NAs,而对于 R292K 和 E119D 突变,扎那米韦的结合机制则不同。该研究强调了需要定期对循环 AI 病毒进行敏感性筛查。