Amino Acid Substitutions in the S2 Subunit of Mouse Hepatitis Virus Variant V51 Encode Determinants of Host Range Expansion
- 1 February 2008
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 82 (3) , 1414-1424
- https://doi.org/10.1128/jvi.01674-07
Abstract
We previously described mouse hepatitis virus (MHV) variant V51 derived from a persistent infection of murine DBT cells with an expanded host range (R. S. Baric, E. Sullivan, L. Hensley, B. Yount, and W. Chen, J. Virol. 73:638-649, 1999). Sequencing of the V51 spike gene, the mediator of virus entry, revealed 13 amino acid substitutions relative to the originating MHV A59 strain. Seven substitutions were located in the amino-terminal S1 cleavage subunit, and six were located in the carboxy-terminal S2 cleavage subunit. Using targeted RNA recombination, we constructed a panel of recombinant viruses to map the mediators of host range to the six substitutions in S2, with a subgroup of four changes of particular interest. This subgroup maps to two previously identified domains within S2, a putative fusion peptide and a heptad repeat, both conserved features of class I fusion proteins. In addition to an altered host range, V51 displayed altered utilization of CEACAM1a, the high-affinity receptor for A59. Interestingly, a recombinant with S1 from A59 and S2 from V51 was severely debilitated in its ability to productively infect cells via CEACAM1a, while the inverse recombinant was not. This result suggests that the S2 substitutions exert powerful effects on the fusion trigger that normally passes from S1 to S2. These novel findings play against the existing data that suggest that MHV host range determinants are located in the S1 subunit, which harbors the receptor binding domain, or involve coordinating changes in both S1 and S2. Mounting evidence also suggests that the class I fusion mechanism may possess some innate plasticity that regulates viral host range.Keywords
This publication has 115 references indexed in Scilit:
- Amino Acid Substitutions in the S2 Region Enhance Severe Acute Respiratory Syndrome Coronavirus Infectivity in Rat Angiotensin-Converting Enzyme 2-Expressing CellsJournal of Virology, 2007
- Core Structure of S2 from the Human Coronavirus NL63 Spike Glycoprotein,Biochemistry, 2006
- Cooperative Involvement of the S1 and S2 Subunits of the Murine Coronavirus Spike Protein in Receptor Binding and Extended Host RangeJournal of Virology, 2006
- Chimpanzee Reservoirs of Pandemic and Nonpandemic HIV-1Science, 2006
- Animal Origins of the Severe Acute Respiratory Syndrome Coronavirus: Insight from ACE2-S-Protein InteractionsJournal of Virology, 2006
- Expanded Tropism and Altered Activation of a Retroviral Glycoprotein Resistant to an Entry Inhibitor PeptideJournal of Virology, 2006
- The structural biology of type I viral membrane fusionNature Reviews Molecular Cell Biology, 2003
- LearnCoil-VMF: computational evidence for coiled-coil-like motifs in many viral membrane-fusion proteinsJournal of Molecular Biology, 1999
- Peptides from conserved regions of paramyxovirus fusion (F) proteins are potent inhibitors of viral fusion.Proceedings of the National Academy of Sciences, 1996
- Evidence for a coiled-coil structure in the spike proteins of coronavirusesJournal of Molecular Biology, 1987