Hepatitis E virus (HEV), a fecal-orally transmitted foodborne viral pathogen,causes acute hepatitis in humans and is responsible for hepatitis E outbreaksworldwide. Since the identification of HEV as a zoonotic agent,...Hepatitis E virus (HEV), a fecal-orally transmitted foodborne viral pathogen,causes acute hepatitis in humans and is responsible for hepatitis E outbreaksworldwide. Since the identification of HEV as a zoonotic agent, this virus has beenisolated from a variety of hosts with an ever-expanding host range. HEV-openreading frame (ORF) 3, the smallest ORF in HEV genomes, initially had beenperceived as an unremarkable HEV accessory protein. However, as novel HEVORF3function has been discovered that is related to the existence of a putativethird virion structural form, referred to as “quasi-enveloped” HEV particles, HEVis challenging the conventional virion structure-based classification scheme,which assigns all viruses to two groups, “enveloped” or “non-enveloped”. In thisreview, we systematically describe recent progress that has identified multiplepathogenic roles of HEV-ORF3, including roles in HEV virion release, biogenesisof quasi-enveloped virus, regulation of the host innate immune response, andinterference with host signaling pathways. In addition, implications of HEVORF3-associated quasi-enveloped virions are discussed to guide futuredevelopment of improved vaccines against zoonotic HEV infection.展开更多
基金National Natural Science Foundation of China,No.31672534Key Project supported by Medical Science and Technology Development Foundation of Nanjing Department of Health,No.ZKX19026.
文摘Hepatitis E virus (HEV), a fecal-orally transmitted foodborne viral pathogen,causes acute hepatitis in humans and is responsible for hepatitis E outbreaksworldwide. Since the identification of HEV as a zoonotic agent, this virus has beenisolated from a variety of hosts with an ever-expanding host range. HEV-openreading frame (ORF) 3, the smallest ORF in HEV genomes, initially had beenperceived as an unremarkable HEV accessory protein. However, as novel HEVORF3function has been discovered that is related to the existence of a putativethird virion structural form, referred to as “quasi-enveloped” HEV particles, HEVis challenging the conventional virion structure-based classification scheme,which assigns all viruses to two groups, “enveloped” or “non-enveloped”. In thisreview, we systematically describe recent progress that has identified multiplepathogenic roles of HEV-ORF3, including roles in HEV virion release, biogenesisof quasi-enveloped virus, regulation of the host innate immune response, andinterference with host signaling pathways. In addition, implications of HEVORF3-associated quasi-enveloped virions are discussed to guide futuredevelopment of improved vaccines against zoonotic HEV infection.