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Fusion resistance and decreased infectability as major host cell determinants of coronavirus persistence
Abstract:
Mouse hepatitis virus persists in cultures of a subline (designated LM-K) of mouse LM cells but produces a lytic infection in L-2 cells. Persistence in the LM-K cells was not accompanied by production of ts mutants or of soluble anti-MHV factors. Infectious center assay demonstrated an approximately 500-fold lower level of infectibility by MHV of the LM-K cells as compared to L-2 cells. On an infected cell basis, production levels of infectious progeny and viral RNA were comparable between the two cell lines. The extent of virus-induced cell-cell fusion, however, was markedly reduced in the LM-K cells. Cell-mixing experiments showed that both infected L-2 and LM-K cells have the capacity of fusing with neighboring uninfected L-2 cells but not with uninfected LM-K cells. This suggests that the decreased level of fusion observed in the LM-K infection is due not to absence of viral fusion protein at the cell surface, but rather to an inherent resistance of the LM-K cell membrane to MHV-induced fusion. It is believed that such fusion resistance in LM-K cells moderates virus dissemination throughout the culture, thereby contributing to a state of virus persistence.
Insights
Mouse hepatitis virus (MHV) causes lytic infections in L-2 cells but persists in LM-K cells due to inherent membrane resistance. This resistance reduces cell-cell fusion, limiting virus spread and promoting persistence.
Area of Science:
- Virology
- Cell Biology
Background:
- Mouse hepatitis virus (MHV) establishes persistent infections in certain cell lines.
- Understanding the mechanisms of viral persistence is crucial for controlling infectious diseases.
Purpose of the Study:
- To investigate the mechanisms underlying MHV persistence in LM-K cells compared to lytic infection in L-2 cells.
- To determine the role of cell-cell fusion in MHV dissemination and persistence.
Main Methods:
- Infectious center assays to measure cell infectibility.
- Viral RNA and progeny production quantification.
- Cell-mixing experiments to assess cell-cell fusion capacity.
Main Results:
- LM-K cells showed a 500-fold lower infectibility by MHV than L-2 cells.
- Progeny virus and viral RNA production per infected cell were comparable between cell lines.
- MHV-induced cell-cell fusion was significantly reduced in LM-K cells, which exhibited resistance to fusion.
Conclusions:
- LM-K cells possess inherent membrane resistance to MHV-induced fusion, not a lack of viral fusion protein.
- This fusion resistance limits virus dissemination, contributing to MHV persistence in LM-K cell cultures.