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A Miniaturized Glycan Microarray Assay for Assessing Avidity and Specificity of Influenza A Virus Hemagglutinins
Published on: May 29, 2016
Glycomic analysis of host response reveals high mannose as a key mediator of influenza severity
Daniel W Heindel1, Sujeethraj Koppolu1, Yue Zhang1
1Biomedical Research Institute, Department of Chemistry, New York University, New York, NY 10003.
Abstract:
Influenza virus infections cause a wide variety of outcomes, from mild disease to 3 to 5 million cases of severe illness and ∼290,000 to 645,000 deaths annually worldwide. The molecular mechanisms underlying these disparate outcomes are currently unknown. Glycosylation within the human host plays a critical role in influenza virus biology. However, the impact these modifications have on the severity of influenza disease has not been examined. Herein, we profile the glycomic host responses to influenza virus infection as a function of disease severity using a ferret model and our lectin microarray technology. We identify the glycan epitope high mannose as a marker of influenza virus-induced pathogenesis and severity of disease outcome. Induction of high mannose is dependent upon the unfolded protein response (UPR) pathway, a pathway previously shown to associate with lung damage and severity of influenza virus infection. Also, the mannan-binding lectin (MBL2), an innate immune lectin that negatively impacts influenza outcomes, recognizes influenza virus-infected cells in a high mannose-dependent manner. Together, our data argue that the high mannose motif is an infection-associated molecular pattern on host cells that may guide immune responses leading to the concomitant damage associated with severity.
Insights
High mannose, a specific glycan, indicates severe influenza outcomes. This finding links host glycosylation and the unfolded protein response to influenza pathogenesis, offering new insights into disease severity.
Area of Science:
- Virology
- Immunology
- Glycobiology
Background:
- Influenza virus causes significant global morbidity and mortality.
- Molecular mechanisms for varying influenza disease severity remain unclear.
- Host glycosylation is crucial for influenza virus biology.
Purpose of the Study:
- To investigate the role of host glycomic responses in influenza disease severity.
- To identify glycan markers associated with influenza pathogenesis.
Main Methods:
- Utilized a ferret model of influenza infection.
- Employed lectin microarray technology to profile host glycomic responses.
- Correlated glycan profiles with disease severity.
Main Results:
- Identified the high mannose glycan epitope as a marker for influenza pathogenesis and disease severity.
- Demonstrated that high mannose induction is dependent on the unfolded protein response (UPR) pathway.
- Showed mannan-binding lectin (MBL2) recognizes influenza-infected cells via high mannose.
Conclusions:
- High mannose acts as an infection-associated molecular pattern on host cells.
- This motif may direct immune responses contributing to influenza-associated damage.
- Findings link host glycosylation and UPR to influenza severity.

