TY - JOUR
T1 - Proteogenomics Uncovers Critical Elements of Host Response in Bovine Soft Palate Epithelial Cells Following In Vitro Infection with Foot-And-Mouth Disease Virus
AU - Pfaff, Florian
AU - Hagglund, Sara
AU - Zoli, Martina
AU - Blaise-Boisseau, Sandra
AU - Laloy, Eve
AU - Koethe, Susanne
AU - Zuehlke, Daniela
AU - Riedel, Katharina
AU - Zientara, Stephan
AU - Bakkali-Kassimi, Labib
AU - Valarcher, Jean-Francois
AU - Hoeper, Dirk
AU - Beer, Martin
AU - Eschbaumer, Michael
PY - 2019
Y1 - 2019
N2 - Foot-and-mouth disease (FMD) is the most devastating disease of cloven-hoofed livestock, with a crippling economic burden in endemic areas and immense costs associated with outbreaks in free countries. Foot-and-mouth disease virus (FMDV), a picornavirus, will spread rapidly in naive populations, reaching morbidity rates of up to 100% in cattle. Even after recovery, over 50% of cattle remain subclinically infected and infectious virus can be recovered from the nasopharynx. The pathogen and host factors that contribute to FMDV persistence are currently not understood. Using for the first time primary bovine soft palate multilayers in combination with proteogenomics, we analyzed the transcriptional responses during acute and persistent FMDV infection. During the acute phase viral RNA and protein was detectable in large quantities and in response hundreds of interferon-stimulated genes (ISG) were overexpressed, mediating antiviral activity and apoptosis. Although the number of pro-apoptotic ISGs and the extent of their regulation decreased during persistence, some ISGs with antiviral activity were still highly expressed at that stage. This indicates a long-lasting but ultimately ineffective stimulation of ISGs during FMDV persistence. Furthermore, downregulation of relevant genes suggests an interference with the extracellular matrix that may contribute to the skewed virus-host equilibrium in soft palate epithelial cells.
AB - Foot-and-mouth disease (FMD) is the most devastating disease of cloven-hoofed livestock, with a crippling economic burden in endemic areas and immense costs associated with outbreaks in free countries. Foot-and-mouth disease virus (FMDV), a picornavirus, will spread rapidly in naive populations, reaching morbidity rates of up to 100% in cattle. Even after recovery, over 50% of cattle remain subclinically infected and infectious virus can be recovered from the nasopharynx. The pathogen and host factors that contribute to FMDV persistence are currently not understood. Using for the first time primary bovine soft palate multilayers in combination with proteogenomics, we analyzed the transcriptional responses during acute and persistent FMDV infection. During the acute phase viral RNA and protein was detectable in large quantities and in response hundreds of interferon-stimulated genes (ISG) were overexpressed, mediating antiviral activity and apoptosis. Although the number of pro-apoptotic ISGs and the extent of their regulation decreased during persistence, some ISGs with antiviral activity were still highly expressed at that stage. This indicates a long-lasting but ultimately ineffective stimulation of ISGs during FMDV persistence. Furthermore, downregulation of relevant genes suggests an interference with the extracellular matrix that may contribute to the skewed virus-host equilibrium in soft palate epithelial cells.
KW - foot-and-mouth disease virus (FMDV)
KW - bovine soft palate
KW - nasopharynx
KW - transcriptomics
KW - proteomics
KW - bioinformatics
KW - virus-host interaction
KW - innate immune system
KW - interferon-stimulated genes (ISG)
KW - foot-and-mouth disease virus (FMDV)
KW - bovine soft palate
KW - nasopharynx
KW - transcriptomics
KW - proteomics
KW - bioinformatics
KW - virus-host interaction
KW - innate immune system
KW - interferon-stimulated genes (ISG)
UR - https://res.slu.se/id/publ/99119
U2 - 10.3390/v11010053
DO - 10.3390/v11010053
M3 - Journal article
SN - 1999-4915
VL - 11
JO - Viruses
JF - Viruses
IS - 1
M1 - 53
ER -