Recombination, Reservoirs, and the Modular Spike: Mechanisms of Coronavirus Cross-Species Transmission

Рекомбинация, резервуары и модульный спайковый белок: механизмы межвидовой передачи коронавирусов
Ralph S. Baric, Rachel L. Graham
2009-11-11

Coronavirus cross-species transmissionReceptor binding domainSARS-CoV emergenceSpike attachment proteinZoonotic reservoirs
Over the past 30 years, several cross-species transmission events, as well as changes in virus tropism, have mediated significant animal and human diseases. Most notable is severe acute respiratory syndrome (SARS), a lower respiratory tract disease of humans that was first reported in late 2002 in Guangdong Province, China. The disease, which quickly spread worldwide over a period of 4 months spanning late 2002 and early 2003, infected over 8,000 individuals and killed nearly 800 before it was successfully contained by aggressive public health intervention strategies. A coronavirus (SARS-CoV) was identified as the etiological agent of SARS, and initial assessments determined that the virus crossed to human hosts from zoonotic reservoirs, including bats, Himalayan palm civets (Paguma larvata), and raccoon dogs (Nyctereutes procyonoides), sold in exotic animal markets in Guangdong Province. In this review, we discuss the molecular mechanisms that govern coronavirus cross-species transmission both in vitro and in vivo, using the emergence of SARS-CoV as a model. We pay particular attention to how changes in the Spike attachment protein, both within and outside of the receptor binding domain, mediate the emergence of coronaviruses in new host populations.
1
Changes in the coronavirus Spike attachment protein, including regions outside the receptor-binding domain, can mediate adaptation to and emergence in new host populations.
2
Coronavirus cross-species transmission and altered tissue tropism have driven major animal and human diseases over the past 30 years.
3
SARS emerged in humans in late 2002, spread globally within four months, infected over 8,000 people, and caused nearly 800 deaths before containment.
4
SARS-CoV was identified as the cause of SARS and likely crossed into humans from zoonotic reservoirs including bats, Himalayan palm civets, and raccoon dogs.
5
The review examines molecular mechanisms governing coronavirus host-jump transmission in vitro and in vivo, using SARS-CoV emergence as a model.

Coronavirus cross-species transmission, modeled primarily by the emergence of SARS-CoV from zoonotic reservoirs into humans

Molecular mechanisms governing host-range expansion and tropism changes, particularly Spike-protein alterations inside and outside the receptor-binding domain

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2009-11-11
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Ralph S. Baric
Rachel L. Graham
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