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Two Cytoplasmic Acylation Sites and an Adjacent Hydrophobic Residue but No Other Conserved Amino Acids in the Cytoplasmic Tail of HA from Influenza A Virus Are Crucial for Virus Replication

机译:甲型流感病毒的HA胞质尾巴中有两个胞质酰化位点和一个相邻的疏水残基但没有其他保守的氨基酸对于病毒复制至关重要

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摘要

Recruitment of the matrix protein M1 to the assembly site of the influenza virus is thought to be mediated by interactions with the cytoplasmic tail of hemagglutinin (HA). Based on a comprehensive sequence comparison of all sequences present in the database, we analyzed the effect of mutating conserved residues in the cytosol-facing part of the transmembrane region and cytoplasmic tail of HA (A/WSN/33 (H1N1) strain) on virus replication and morphology of virions. Removal of the two cytoplasmic acylation sites and substitution of a neighboring isoleucine by glutamine prevented rescue of infectious virions. In contrast, a conservative exchange of the same isoleucine, non-conservative exchanges of glycine and glutamine, deletion of the acylation site at the end of the transmembrane region and shifting it into the tail did not affect virus morphology and had only subtle effects on virus growth and on the incorporation of M1 and Ribo-Nucleoprotein Particles (RNPs). Thus, assuming that essential amino acids are conserved between HA subtypes we suggest that, besides the two cytoplasmic acylation sites (including adjacent hydrophobic residues), no other amino acids in the cytoplasmic tail of HA are indispensable for virus assembly and budding.
机译:基质蛋白M1被募集到流感病毒的装配位点被认为是通过与血凝素(HA)的细胞质尾相互作用而介导的。基于数据库中所有序列的全面序列比较,我们分析了HA的跨膜区域和A的胞质尾巴(A / WSN / 33(H1N1)株)的细胞质面向部分的保守残基突变对病毒的影响病毒体的复制和形态。去除两个胞质酰化位点和用谷氨酰胺替代相邻的异亮氨酸阻止了感染性病毒体的抢救。相比之下,相同异亮氨酸的保守交换,甘氨酸和谷氨酰胺的非保守交换,跨膜区域末端酰化位点的缺失以及其转移到尾部都不会影响病毒的形态,而对病毒的影响很小M1和核糖核蛋白颗粒(RNP)的生长。因此,假设必需氨基酸在HA亚型之间是保守的,我们建议,除了两个胞质酰化位点(包括相邻的疏水残基)外,HA胞质尾部中的其他氨基酸对于病毒的组装和萌芽都是必不可少的。

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