Centre of Protein Science and Crystallography, School of Life Sciences, The Chinese University of Hong Kong, Hong Kong, China.
Li Dak Sum Yip Yio Chin R&D Centre for Chinese Medicine, The Chinese University of Hong Kong, Hong Kong, China.
Viruses. 2023 Jan 30;15(2):396. doi: 10.3390/v15020396.
PB1, acting as the catalytic subunit of the influenza polymerase, has numerous sequentially and structurally conserved regions. It has been observed that the slight modification of residues in PB1 would greatly affect the polymerase activity and even host adaptation ability. Here, we identified a critical residue, 362M, on the polymerase activity and virus replication. By means of the minireplicon assay, we assured the importance of the hydrophobicity of PB1 362, and the possibility that the size and charge of the side chain might directly interfere with the polymerase function. We also proposed a hydrophobic core between the PA-arch and the PB1 β-hairpin motifs and showed the importance of the core to the polymerase function.
PB1 作为流感聚合酶的催化亚基,具有许多连续且结构保守的区域。已经观察到,聚合酶中残基的微小改变会极大地影响聚合酶活性甚至宿主适应能力。在这里,我们确定了一个关键残基,即聚合酶活性和病毒复制的 362M。通过 minireplicon 测定,我们确定了 PB1 362 的疏水性的重要性,以及侧链的大小和电荷可能直接干扰聚合酶功能的可能性。我们还提出了 PA-拱和 PB1 β-发夹结构域之间的疏水性核心,并显示了核心对聚合酶功能的重要性。