Callison S A, Jackwood M W, Hilt D A
Department of Avian Medicine, College of Veterinary Medicine, University of Georgia, Athens 30602, USA.
Virus Genes. 1999;19(2):143-51. doi: 10.1023/a:1008179208217.
The S2 gene of several strains of infectious bronchitis virus (IBV) belonging to the Arkansas, Connecticut, and Florida serotypes was sequenced. Phylogenetic analysis of the S2 gene nucleotide and deduced amino acid sequence data resulted in groups of strains that were the same as groupings observed when S1 sequence data was used. Thus, it appears that S2 subunits are conserved within a serotype but not between serotypes. Although the sequence differences were small, we found that only a few amino acid differences were responsible for different secondary structure predictions for the S2 subunit. It is likely that these changes create different interactions between the S1 and S2 subunits, which could affect the conformation of the S1 subunit where serotype specific epitopes are located. Based on this sequence data, we hypothesize that the S2 subunit can affect specific antibody binding to the S1 subunit of the IBV spike glycoprotein.
对属于阿肯色州、康涅狄格州和佛罗里达州血清型的几株传染性支气管炎病毒(IBV)的S2基因进行了测序。对S2基因核苷酸和推导的氨基酸序列数据进行系统发育分析,得到的毒株分组与使用S1序列数据时观察到的分组相同。因此,似乎S2亚基在血清型内是保守的,但在血清型之间不是保守的。尽管序列差异很小,但我们发现只有少数氨基酸差异导致了S2亚基不同的二级结构预测。这些变化可能在S1和S2亚基之间产生不同的相互作用,这可能会影响血清型特异性表位所在的S1亚基的构象。基于这些序列数据,我们推测S2亚基可以影响特异性抗体与IBV刺突糖蛋白S1亚基的结合。