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Reverse Genetics Mediated Recovery of Infectious Murine Norovirus
Published on: June 24, 2012
CD300LF Polymorphisms of Inbred Mouse Strains Confer Resistance to Murine Norovirus Infection in a Cell
Kevin Furlong1, Scott B Biering1, Jayoung Choi2
1Committee on Microbiology, The University of Chicago, Chicago, Illinois, USA.
Abstract:
Human norovirus is the leading cause of gastroenteritis worldwide, yet basic questions about its life cycle remain unanswered due to an historical lack of robust experimental systems. Recent studies on the closely related murine norovirus (MNV) have identified CD300LF as an indispensable entry factor for MNV. We compared the MNV susceptibilities of cells from different mouse strains and identified polymorphisms in murine CD300LF which are critical for its function as an MNV receptor. Bone marrow-derived macrophages (BMDMs) from I/LnJ mice were resistant to infection from multiple MNV strains which readily infect BMDMs from C57BL/6J mice. The resistance of I/LnJ BMDMs was specific to MNV, since the cells supported infection of other viruses comparably to C57BL/6J BMDMs. Transduction of I/LnJ BMDMs with C57BL/6J CD300LF made the cells permissible to MNV infection, suggesting that the cause of resistance lies in the entry step of MNV infection. In fact, we mapped this phenotype to a 4-amino-acid difference at the CC' loop of CD300LF; swapping of these amino acids between C57BL/6J and I/LnJ CD300LF proteins made the mutant C57BL/6J CD300LF functionally impaired and the corresponding mutant of I/LnJ CD300LF functional as an MNV entry factor. Surprisingly, expression of the I/LnJ CD300LF in other cell types made the cells infectible by MNV, even though the I/LnJ allele did not function as an MNV receptor in macrophage-like cells. Correspondingly, I/LnJ CD300LF bound MNV virions in permissive cells but not in nonpermissive cells. Collectively, our data suggest the existence of a cell type-specific modifier of MNV entry.IMPORTANCE MNV is a prevalent model system for studying human norovirus, which is the leading cause of gastroenteritis worldwide and thus a sizeable public health burden. Elucidating mechanisms underlying susceptibility of host cells to MNV infection can lead to insights on the roles that specific cell types play during norovirus pathogenesis. Here, we show that different alleles of the proteinaceous receptor for MNV, CD300LF, function in a cell type-dependent manner. In contrast to the C57BL/6J allele, which functions as an MNV entry factor in all tested cell types, including human cells, I/LnJ CD300LF does not function as an MNV entry factor in macrophage-like cells but does allow MNV entry in other cell types. Together, these observations indicate the existence of cell type-specific modifiers of CD300LF-dependent MNV entry.
Insights
Murine norovirus (MNV) entry depends on CD300LF, but its function varies by cell type. Genetic differences in CD300LF reveal cell-specific modifiers impacting MNV infection.
Area of Science:
- Virology
- Immunology
- Genetics
Background:
- Human norovirus causes widespread gastroenteritis, with murine norovirus (MNV) serving as a key model system.
- CD300LF is identified as an essential entry factor for MNV infection.
- Variations in CD300LF function could explain differential MNV susceptibility.
Purpose of the Study:
- To investigate the role of CD300LF polymorphisms in MNV entry.
- To identify cell type-specific factors influencing MNV infection.
- To understand the mechanisms of MNV host cell entry.
Main Methods:
- Comparing MNV susceptibility in cells from different mouse strains (I/LnJ vs. C57BL/6J).
- Analyzing CD300LF gene polymorphisms and their impact on MNV binding and entry.
- Utilizing gene transduction to assess the functional role of CD300LF alleles in various cell types.
Main Results:
- I/LnJ mouse macrophages are resistant to MNV, unlike C57BL/6J macrophages.
- A 4-amino-acid difference in CD300LF determines MNV receptor function in macrophages.
- I/LnJ CD300LF enables MNV entry in non-macrophage cells, indicating cell type-specific modulation.
Conclusions:
- CD300LF functions as an MNV receptor, but its efficacy is modulated by cell type.
- Cell type-specific modifiers influence MNV entry via CD300LF.
- These findings provide insights into norovirus pathogenesis and host-cell interactions.

