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Published on: January 20, 2017
Human megakaryocytes possess intrinsic antiviral immunity through regulated induction of IFITM3
Robert A Campbell1,2, Hansjorg Schwertz1,2,3, Eugenio D Hottz1,4,5
1University of Utah Molecular Medicine Program, Salt Lake City, UT.
Abstract:
Evolving evidence indicates that platelets and megakaryocytes (MKs) have unexpected activities in inflammation and infection; whether viral infections upregulate biologically active, antiviral immune genes in platelets and MKs is unknown, however. We examined antiviral immune genes in these cells in dengue and influenza infections, viruses that are global public health threats. Using complementary biochemical, pharmacological, and genetic approaches, we examined the regulation and function of interferon-induced transmembrane protein 3 (IFITM3), an antiviral immune effector gene not previously studied in human platelets and MKs. IFITM3 was markedly upregulated in platelets isolated from patients during clinical influenza and dengue virus (DENV) infections. Lower IFITM3 expression in platelets correlated with increased illness severity and mortality in patients. Administering a live, attenuated DENV vaccine to healthy subjects significantly increased platelet IFITM3 expression. Infecting human MKs with DENV selectively increased type I interferons and IFITM3. Overexpression of IFITM3 in MKs was sufficient to prevent DENV infection. In naturally occurring, genetic loss-of-function studies, MKs from healthy subjects harboring a homozygous mutation in IFITM3 (rs12252-C, a common single-nucleotide polymorphism in areas of the world where DENV is endemic) were significantly more susceptible to DENV infection. DENV-induced MK secretion of interferons prevented infection of bystander MKs and hematopoietic stem cells. Thus, viral infections upregulate IFITM3 in human platelets and MKs, and IFITM3 expression is associated with adverse clinical outcomes. These observations establish, for the first time, that human MKs possess antiviral functions, preventing DENV infection of MKs and hematopoietic stem cells after local immune signaling.
Insights
Viral infections like dengue and influenza upregulate antiviral genes, including IFITM3, in platelets and megakaryocytes. Lower IFITM3 expression correlates with severe illness, highlighting its role in antiviral defense.
Area of Science:
- Immunology
- Virology
- Hematology
Background:
- Platelets and megakaryocytes (MKs) play roles in inflammation and infection.
- Antiviral gene expression in these cells during viral infections is not well understood.
Purpose of the Study:
- To investigate the regulation and function of interferon-induced transmembrane protein 3 (IFITM3) in human platelets and MKs during dengue and influenza infections.
- To determine the association between IFITM3 expression and clinical outcomes in viral infections.
Main Methods:
- Analysis of IFITM3 expression in platelets from patients with influenza and dengue virus (DENV) infections.
- Infection of human MKs with DENV and assessment of interferon and IFITM3 levels.
- Genetic studies using MKs with IFITM3 loss-of-function mutations.
- DENV vaccine administration to healthy subjects.
Main Results:
- IFITM3 was significantly upregulated in platelets during influenza and DENV infections.
- Lower platelet IFITM3 expression correlated with increased illness severity and mortality.
- DENV infection of MKs increased type I interferons and IFITM3, with IFITM3 overexpression preventing DENV infection.
- MKs with IFITM3 mutations showed increased susceptibility to DENV infection.
- DENV-induced MK interferon secretion protected bystander cells.
Conclusions:
- Viral infections upregulate IFITM3 in human platelets and MKs.
- IFITM3 expression in these cells is linked to clinical outcomes.
- Human MKs possess antiviral functions, mediated by IFITM3 and interferons, protecting themselves and hematopoietic stem cells.
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