Luczo Jasmina M, Spackman Erica
Australian Animal Health Laboratory, Australian Centre for Disease Preparedness, Commonwealth Scientific and Industrial Research Organisation, East Geelong, Australia.
United States Department of Agriculture, Exotic & Emerging Avian Viral Diseases Research, Southeast Poultry Research Laboratory, United States National Poultry Research Center, Agricultural Research Service, Athens, Georgia, USA.
Rev Med Virol. 2025 Jan;35(1):e70012. doi: 10.1002/rmv.70012.
Avian influenza viruses are ubiquitous in the Anatinae subfamily of aquatic birds and occasionally spill over to poultry. Infection with low pathogenicity avian influenza viruses generally leads to subclinical or mild clinical disease. In contrast, highly pathogenic avian influenza viruses emerge from low pathogenic forms and can cause severe disease associated with extraordinarily high mortality rates. Here, we describe the natural history of avian influenza virus, with a focus on H5Nx and H7Nx subtypes, and the emergence of highly pathogenic forms; we review the biology of AIV; we examine cleavage of haemagglutinin by host cell enzymes with a particular emphasis on the biochemical properties of the proprotein convertases, and trypsin and trypsin-like proteases; we describe mechanisms implicated in the functional evolution of the haemagglutinin cleavage site motif that leads to emergence of HPAIVs; and finally, we discuss the diversity of H5 and H7 haemagglutinin cleavage site sequence motifs. It is crucial to understand the molecular attributes that drive the emergence and evolution of HPAIVs with pandemic potential to inform risk assessments and mitigate the threat of HPAIVs to poultry and human populations.
禽流感病毒在水鸟的鸭亚科中普遍存在,偶尔会传播到家禽身上。感染低致病性禽流感病毒通常会导致亚临床或轻度临床疾病。相比之下,高致病性禽流感病毒由低致病性形式演变而来,可引发与极高死亡率相关的严重疾病。在此,我们描述禽流感病毒的自然史,重点关注H5Nx和H7Nx亚型以及高致病性形式的出现;我们回顾禽流感病毒的生物学特性;我们研究宿主细胞酶对血凝素的切割,特别强调前体蛋白转化酶、胰蛋白酶和类胰蛋白酶的生化特性;我们描述导致高致病性禽流感病毒出现的血凝素切割位点基序功能进化所涉及的机制;最后,我们讨论H5和H7血凝素切割位点序列基序的多样性。了解驱动具有大流行潜力的高致病性禽流感病毒出现和进化的分子特性对于进行风险评估和减轻高致病性禽流感病毒对家禽和人类的威胁至关重要。