生物
麻疹病毒
麻疹病毒
维罗细胞
病毒学
牛瘟病毒
脂质双层融合
病毒进入
病毒
融合蛋白
HEK 293细胞
突变
细胞生物学
受体
病毒复制
重组DNA
突变
遗传学
基因
麻疹
牛瘟
接种疫苗
作者
Giulia Gallo,Carina Conceicao,Christina Tsirigoti,Brian J. Willett,Stephen C. Graham,Dalan Bailey
摘要
The enveloped morbilliviruses utilise conserved proteinaceous receptors to enter host cells: SLAMF1 or Nectin-4. Receptor binding is initiated by the viral attachment protein Haemagglutinin (H), with the viral Fusion protein (F) driving membrane fusion. Crystal structures of the prototypic morbillivirus measles virus H with either SLAMF1 or Nectin-4 are available and have served as the basis for improved understanding of this interaction. However, whether these interactions remain conserved throughout the morbillivirus genus requires further characterisation. Using a random mutagenesis approach, based on error-prone PCR, we targeted the putative receptor binding site for SLAMF1 interaction on peste des petits ruminants virus (PPRV) H, identifying mutations that inhibited virus-induced cell-cell fusion. These data, combined with structural modelling of the PPRV H and ovine SLAMF1 interaction, indicate this region is functionally conserved across all morbilliviruses. Error-prone PCR provides a powerful tool for functionally characterising functional domains within viral proteins.
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