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Influenza Virus Propagation in Embryonated Chicken Eggs
Published on: March 19, 2015
Human parainfluenza virus evolution during lung infection of immunocompromised individuals promotes viral persistence
Alexander L Greninger1,2, Ksenia Rybkina3,4, Michelle J Lin1
1Department of Laboratory Medicine and Pathology, University of Washington, Seattle, Washington, USA.
Abstract:
The capacity of respiratory viruses to undergo evolution within the respiratory tract raises the possibility of evolution under the selective pressure of the host environment or drug treatment. Long-term infections in immunocompromised hosts are potential drivers of viral evolution and development of infectious variants. We showed that intrahost evolution in chronic human parainfluenza virus 3 (HPIV3) infection in immunocompromised individuals elicited mutations that favored viral entry and persistence, suggesting that similar processes may operate across enveloped respiratory viruses. We profiled longitudinal HPIV3 infections from 2 immunocompromised individuals that persisted for 278 and 98 days. Mutations accrued in the HPIV3 attachment protein hemagglutinin-neuraminidase (HN), including the first in vivo mutation in HN's receptor binding site responsible for activating the viral fusion process. Fixation of this mutation was associated with exposure to a drug that cleaves host-cell sialic acid moieties. Longitudinal adaptation of HN was associated with features that promote viral entry and persistence in cells, including greater avidity for sialic acid and more active fusion activity in vitro, but not with antibody escape. Long-term infection thus led to mutations promoting viral persistence, suggesting that host-directed therapeutics may support the evolution of viruses that alter their biophysical characteristics to persist in the face of these agents in vivo.
Insights
Long-term respiratory virus infections in immunocompromised individuals can drive viral evolution. Mutations in human parainfluenza virus 3 (HPIV3) enhanced viral entry and persistence, not antibody escape.
Area of Science:
- Virology
- Immunocompromised Host Research
- Viral Evolution
Background:
- Respiratory viruses can evolve under host or drug selective pressures.
- Long-term infections in immunocompromised individuals may drive viral evolution and variant development.
Purpose of the Study:
- To investigate intrahost evolution of human parainfluenza virus 3 (HPIV3) in immunocompromised individuals.
- To identify mutations favoring viral entry and persistence.
Main Methods:
- Profiling longitudinal HPIV3 infections from two immunocompromised individuals with long-term infections (278 and 98 days).
- Analyzing mutations in the hemagglutinin-neuraminidase (HN) protein, including its receptor binding site.
Main Results:
- Mutations in HPIV3's HN protein favored viral entry and persistence.
- A key mutation in the HN receptor binding site was linked to sialic acid-cleaving drug exposure.
- HN adaptation enhanced sialic acid avidity and in vitro fusion activity, but not antibody escape.
Conclusions:
- Long-term HPIV3 infections can lead to mutations promoting viral persistence.
- Host-directed therapeutics might inadvertently support the evolution of viruses with altered biophysical properties for in vivo persistence.
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