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Efficient Generation of Recombinant Influenza A Viruses Employing a New Approach to Overcome the Genetic Instability of HA Segments

机译:有效的重组A型流感病毒的产生采用一种新的方法来克服HA片段的遗传不稳定性

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摘要

Influenza A viruses (IAVs) are the most relevant and continual source of severe infectious respiratory complications in humans and different animal species, especially poultry. Therefore, an efficient vaccination that elicits protective and neutralizing antibodies against the viral hemagglutinin (HA) and neuraminidase (NA) is an important strategy to counter annual epidemics or occasional pandemics. With the help of plasmid-based reverse genetics technology, it is possible that IAV vaccine strains (IVVS) are rapidly generated. However, the genetic instability of some cloned HA-cDNAs after transformation into competent bacteria represents a major obstacle. Herein, we report efficient cloning strategies of different genetically volatile HA segments (H5- and H9-subtypes) employing either a newly constructed vector for reverse genetics (pMKPccdB) or by the use of the Escherichia coli strain HB101. Both approaches represent improved and generalizable strategies to establish functional reverse genetics systems preventing genetic changes to the cloned (HA) segments of IAV facilitating more efficient rescue of recombinant IAV for basic research and vaccine development.
机译:甲型流感病毒(IAV)是人类和不同动物物种(尤其是家禽)中最重要的持续感染严重呼吸道并发症的来源。因此,引发针对病毒血凝素(HA)和神经氨酸酶(NA)的保护性和中和性抗体的有效疫苗接种是应对每年流行病或偶尔流行病的重要策略。借助于基于质粒的反向遗传学技术,有可能迅速产生IAV疫苗株(IVVS)。然而,一些克隆的HA-cDNA在转化为感受态细菌后的遗传不稳定性是一个主要障碍。在本文中,我们报告了采用新构建的反向遗传学载体(pMKPccdB)或通过使用大肠杆菌菌株HB101,对不同遗传易失性HA片段(H5-和H9亚型)进行有效克隆的策略。两种方法都代表建立功能性反向遗传学系统的改进的和可推广的策略,这些系统可防止对IAV的克隆(HA)片段进行遗传改变,从而有助于更有效地拯救重组IAV,以进行基础研究和疫苗开发。

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