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新城疫病毒VII.1.1亚基因型血凝素神经氨酸酶基因内一个额外N-糖基化位点和热稳定突变的鉴定

Identification of an additional N-glycosylation site and thermostable mutations within the hemagglutinin-neuraminidase gene of the Newcastle disease virus belonging to the VII.1.1 sub-genotype.

作者信息

Babaeimarzangou Seyed Sajjad, Allymehr Manochehr, Molouki Aidin, Talebi Alireza, Fallah Mehrabadi Mohammad Hossein

机构信息

Department of Poultry Health and Diseases, Faculty of Veterinary Medicine, Urmia University, Urmia, Iran.

Department of Avian Diseases Research and Diagnostics, Razi Vaccine and Serum Research Institute, Agricultural Research, Education and Extension Organization (AREEO), Karaj, Iran.

出版信息

Vet Res Forum. 2023;14(8):447-456. doi: 10.30466/vrf.2022.558074.3562. Epub 2023 Aug 15.

Abstract

Newcastle disease virus (NDV) is considered one of the most devastating avian viral patho-gens affecting the avian population, and it causes a significant economic burden on the poultry industry worldwide. The study aimed to gain deeper understanding of the molecular and phylogenetic analyses of the complete hemagglutinin-neuraminidase (HN) coding region among NDV isolates. The samples were obtained from different parts of Iran from July 2017 to February 2020, were used for phylogenic analysis in this study. The results confirmed the predominance of sub-genotype VII.1.1, previously known as sub-genotype VIIL, which is circulating in commercial broiler farms of Iran. Identification of (a) an additional N-glycosylation site (NIS) at position 144; (b) mutations S315P and I369V which are related to increasing the viral thermostability; (C) cysteine residues at positions 123; (d) amino acid substitutions in the HN antigenic sites, especially the mutations I514V and E347Q, as well as the other mutant within HN binding sites of the VII.1.1 sub-genotype, suggests the idea that this new sub-genotype of NDV may possess a high level of pathogenicity and virulence compared to other NDV sub-genotypes. In conclusion, the results indicate the presence of an additional NIS at position 144, which may alter the virulence of the isolates. Furthermore, the presence of the thermostable mutations (S315P and I369V) and the other amino acid substitutions among the VII.1.1 sub-genotype isolates may have an impact on the vaccine immunity against this new NDV sub-genotype.

摘要

新城疫病毒(NDV)被认为是影响禽类种群的最具毁灭性的禽类病毒病原体之一,它给全球家禽业造成了巨大的经济负担。本研究旨在更深入地了解新城疫病毒分离株中完整血凝素 - 神经氨酸酶(HN)编码区的分子和系统发育分析。样本于2017年7月至2020年2月从伊朗不同地区采集,用于本研究的系统发育分析。结果证实了VII.1.1亚基因型的优势,该亚基因型以前称为VIIL亚基因型,在伊朗的商业肉鸡场中传播。鉴定出:(a)在第144位有一个额外的N - 糖基化位点(NIS);(b)与提高病毒热稳定性相关的S315P和I369V突变;(C)第123位的半胱氨酸残基;(d)HN抗原位点的氨基酸替换,特别是I514V和E347Q突变,以及VII.1.1亚基因型HN结合位点内的其他突变,这表明与其他新城疫病毒亚基因型相比,这种新城疫病毒新亚基因型可能具有高水平的致病性和毒力。总之,结果表明在第144位存在额外的NIS,这可能会改变分离株的毒力。此外,VII.1.1亚基因型分离株中热稳定突变(S315P和I369V)以及其他氨基酸替换的存在可能会影响针对这种新城疫病毒新亚基因型的疫苗免疫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6198/10475166/54be51277a77/vrf-14-447-g001.jpg

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