4.6 Review

Zoonotic Origins of Human Metapneumovirus: A Journey from Birds to Humans

Journal

VIRUSES-BASEL
Volume 14, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/v14040677

Keywords

avian metapneumovirus; human metapneumovirus; host tropism; virus evolution; animal models; F protein; G protein

Categories

Funding

  1. Deutsche Forschungsgemeinschaft (DFG
  2. German Research Foundation) [398066876/GRK 2485/1]
  3. Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) [LE 824/10-1]
  4. University of Veterinary Medicine Hanover, Foundation

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This article reviews the discovery history of metapneumoviruses, discusses the host tropism, pathogenicity, and molecular characteristics of different subgroups, and emphasizes the importance of understanding the evolutionary pathways through which human metapneumovirus has emerged as a seasonal endemic respiratory virus.
Metapneumoviruses, members of the family Pneumoviridae, have been identified in birds (avian metapneumoviruses; AMPV's) and humans (human metapneumoviruses; HMPV's). AMPV and HMPV are closely related viruses with a similar genomic organization and cause respiratory tract illnesses in birds and humans, respectively. AMPV can be classified into four subgroups, A-D, and is the etiological agent of turkey rhinotracheitis and swollen head syndrome in chickens. Epidemiological studies have indicated that AMPV also circulates in wild bird species which may act as reservoir hosts for novel subtypes. HMPV was first discovered in 2001, but retrospective studies have shown that HMPV has been circulating in humans for at least 50 years. AMPV subgroup C is more closely related to HMPV than to any other AMPV subgroup, suggesting that HMPV has evolved from AMPV-C following zoonotic transfer. In this review, we present a historical perspective on the discovery of metapneumoviruses and discuss the host tropism, pathogenicity, and molecular characteristics of the different AMPV and HMPV subgroups to provide increased focus on the necessity to better understand the evolutionary pathways through which HMPV emerged as a seasonal endemic human respiratory virus.

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