Department of Virology, University of Freiburg, 70104 Freiburg, Germany.
J Biol Chem. 2010 May 28;285(22):16704-12. doi: 10.1074/jbc.M110.102533. Epub 2010 Apr 2.
Despite their close phylogenetic relationship, natural intertypic reassortants between influenza A (FluA) and B (FluB) viruses have not been described. Inefficient polymerase assembly of the three polymerase subunits may contribute to this incompatibility, especially because the known protein-protein interaction domains, including the PA-binding domain of PB1, are highly conserved for each virus type. Here we show that substitution of the FluA PA-binding domain (PB1-A(1-25)) with that of FluB (PB1-B(1-25)) is accompanied by reduced polymerase activity and viral growth of FluA. Consistent with these findings, surface plasmon resonance spectroscopy measurements revealed that PA of FluA exhibits impaired affinity to biotinylated PB1-B(1-25) peptides. PA of FluB showed no detectable affinity to biotinylated PB1-A(1-25) peptides. Consequently, FluB PB1 harboring the PA-binding domain of FluA (PB1-AB) failed to assemble with PA and PB2 into an active polymerase complex. To regain functionality, we used a single amino acid substitution (T6Y) known to confer binding to PA of both virus types, which restored polymerase complex formation but surprisingly not polymerase activity for FluB. Taken together, our results demonstrate that the conserved virus type-specific PA-binding domains differ in their affinity to PA and thus might contribute to intertypic exclusion of reassortants between FluA and FluB viruses.
尽管甲型流感病毒(FluA)和乙型流感病毒(FluB)在进化上关系密切,但尚未描述它们之间自然发生的基因重配。聚合酶三个亚基的组装效率低下可能是导致这种不兼容性的原因之一,特别是因为已知的蛋白-蛋白相互作用结构域,包括 PB1 的 PA 结合结构域,在每种病毒类型中都高度保守。在这里,我们发现用 FluB 的 PA 结合结构域(PB1-B(1-25))替代 FluA 的 PA 结合结构域(PB1-A(1-25))会降低 FluA 的聚合酶活性和病毒生长。这些发现与表面等离子体共振光谱测量结果一致,表明 FluA 的 PA 对生物素化的 PB1-B(1-25)肽的亲和力受损。FluB 的 PA 对生物素化的 PB1-A(1-25)肽没有检测到亲和力。因此,携带 FluA 的 PA 结合结构域(PB1-AB)的 FluB PB1 无法与 PA 和 PB2 组装成有活性的聚合酶复合物。为了恢复功能,我们使用了一个已知能够与两种病毒的 PA 结合的单一氨基酸取代(T6Y),它恢复了聚合酶复合物的形成,但令人惊讶的是,对 FluB 的聚合酶活性没有恢复。总之,我们的结果表明,保守的病毒特异性 PA 结合结构域在与 PA 的亲和力上存在差异,因此可能有助于阻止 FluA 和 FluB 病毒之间的基因重配。