Mechanisms of Maintenance of Foot-and-Mouth Disease Virus Persistence Inferred From Genes Differentially Expressed in Nasopharyngeal Epithelia of Virus Carriers and Non-carriers

被引:9
作者
Zhu, James J. [1 ]
Stenfeldt, Carolina [1 ,2 ]
Bishop, Elizabeth A. [1 ]
Canter, Jessica A. [1 ,3 ]
Eschbaumer, Michael [4 ]
Rodriguez, Luis L. [1 ]
Arzt, Jonathan [1 ]
机构
[1] USDA ARS, Foreign Anim Dis Res Unit, Plum Isl Anim Dis Ctr, Orient, NY 11957 USA
[2] Kansas State Univ, Dept Diagnost Med Pathobiol, Manhattan, KS 66506 USA
[3] Oak Ridge Inst Sci & Educ ORISE, Plum Isl Anim Dis Ctr, Orient, NY USA
[4] Friedrich Loeffler Inst, Inst Diagnost Virol, Greifswald, Germany
关键词
foot-and-mouth disease virus; FMDV; microarray analysis; persistent infection; pharyngeal epithelia; chemokine expression; NF kappa B signaling pathways; the Th17 response; NF-KAPPA-B; REGULATORY T-CELLS; TRANSMEMBRANE CXC-CHEMOKINE; INNATE IMMUNE-RESPONSE; PULMONARY HOST-DEFENSE; TRANSCRIPTION FACTORS; TISSUE-RESIDENT; MESSENGER-RNA; ALARMIN IL-33; FAMILY-MEMBER;
D O I
10.3389/fvets.2020.00340
中图分类号
S85 [动物医学(兽医学)];
学科分类号
0906 ;
摘要
Foot-and-mouth disease virus (FMDV) causes persistent infection of nasopharyngeal epithelial cells in similar to 50% of infected ruminants. The mechanisms involved are not clear. This study provides a continued investigation of differentially expressed genes (DEG) identified in a previously published transcriptomic study analyzing micro-dissected epithelial samples from FMDV carriers and non-carriers. Pathway analysis of DEG indicated that immune cell trafficking, cell death and hematological system could be affected by the differential gene expression. Further examination of the DEG identified five downregulated (chemerin, CCL23, CXCL15, CXCL16, and CXCL17) and one upregulated (CCL2) chemokines in carriers compared to non-carriers. The differential expression could reduce the recruitment of neutrophils, antigen-experienced T cells and dendritic cells and increase the migration of macrophages and NK cells to the epithelia in carriers, which was supported by DEG expressed in these immune cells. Downregulated chemokine expression could be mainly due to the inhibition of canonical NFKB signaling based on DEG in the signaling pathways and transcription factor binding sites predicted from the proximal promoters. Additionally, upregulated CD69, IL33, and NID1 and downregulated CASP3, IL17RA, NCR3LG1, TP53BP1, TRAF3, and TRAF6 in carriers could inhibit the Th17 response, NK cell cytotoxicity and apoptosis. Based on our findings, we hypothesize that (1) under-expression of chemokines that recruit neutrophils, antigen-experienced T cells and dendritic cells, (2) blocking NK cell binding to target cells and (3) suppression of apoptosis induced by death receptor signaling, viral RNA, and cell-mediated cytotoxicity in the epithelia compromised virus clearance and allowed FMDV to persist. These hypothesized mechanisms provide novel information for further investigation of persistent FMDV infection.
引用
收藏
页数:20
相关论文
共 168 条
[1]   The transmembrane CXC-chemokine ligand 16 is induced by IFN-γ and TNF-α and shed by the activity of the disintegrin-like metalloproteinase ADAM10 [J].
Abel, S ;
Hundhausen, C ;
Mentlein, R ;
Schulte, A ;
Berkhout, TA ;
Broadway, N ;
Hartmann, D ;
Sedlacek, R ;
Dietrich, S ;
Muetze, B ;
Schuster, B ;
Kallen, KJ ;
Saftig, P ;
Rose-John, S ;
Ludwig, A .
JOURNAL OF IMMUNOLOGY, 2004, 172 (10) :6362-6372
[2]   IL-17 Signaling: The Yin and the Yang [J].
Amatya, Nilesh ;
Garg, Abhishek V. ;
Gaffen, Sarah L. .
TRENDS IN IMMUNOLOGY, 2017, 38 (05) :310-322
[3]   The aryl hydrocarbon receptor interacts with c-Maf to promote the differentiation of type 1 regulatory T cells induced by IL-27 [J].
Apetoh, Lionel ;
Quintana, Francisco J. ;
Pot, Caroline ;
Joller, Nicole ;
Xiao, Sheng ;
Kumar, Deepak ;
Burns, Evan J. ;
Sherr, David H. ;
Weiner, Howard L. ;
Kuchroo, Vijay K. .
NATURE IMMUNOLOGY, 2010, 11 (09) :854-U112
[4]   Human Neutrophils Produce CCL23 in Response to Various TLR-Agonists and TNFα [J].
Arruda-Silva, Fabio ;
Bianchetto-Aguilera, Francisco ;
Gasperini, Sara ;
Polletti, Sara ;
Cosentino, Emanuela ;
Tamassia, Nicola ;
Cassatella, Marco A. .
FRONTIERS IN CELLULAR AND INFECTION MICROBIOLOGY, 2017, 7
[5]   The Early Pathogenesis of Foot-and-Mouth Disease in Cattle After Aerosol Inoculation: Identification of the Nasopharynx as the Primary Site of Infection [J].
Arzt, J. ;
Pacheco, J. M. ;
Rodriguez, L. L. .
VETERINARY PATHOLOGY, 2010, 47 (06) :1048-1063
[6]   The evolution of a super-swarm of foot-and-mouth disease virus in cattle [J].
Arzt, Jonathan ;
Fish, Ian ;
Pauszek, Steven J. ;
Johnson, Shannon L. ;
Chain, Patrick S. ;
Rai, Devendra K. ;
Rieder, Elizabeth ;
Goldberg, Tony L. ;
Rodriguez, Luis L. ;
Stenfeldt, Carolina .
PLOS ONE, 2019, 14 (04)
[7]  
Arzt J, 2018, MSPHERE, V3, DOI [10.1128/mSphere.00365-18, 10.1128/msphere.00365-18]
[8]   The adaptor protein LAT serves as an integration node for signaling pathways that drive T cell activation [J].
Bartelt, Rebekah R. ;
Houtman, Jon C. D. .
WILEY INTERDISCIPLINARY REVIEWS-SYSTEMS BIOLOGY AND MEDICINE, 2013, 5 (01) :101-110
[9]   Lack of Transmission of Foot-and-Mouth Disease Virus From Persistently Infected Cattle to Naive Cattle Under Field Conditions in Vietnam [J].
Bertram, Miranda R. ;
Vu, Le T. ;
Pauszek, Steven J. ;
Brito, Barbara P. ;
Hartwig, Ethan J. ;
Smoliga, George R. ;
Hoang, Bui H. ;
Phuong, Nguyen T. ;
Stenfeldt, Carolina ;
Fish, Ian H. ;
Hung, Vo V. ;
Delgado, Amy ;
VanderWaal, Kimberley ;
Rodriguez, Luis L. ;
Long, Ngo T. ;
Dung, Do H. ;
Arzt, Jonathan .
FRONTIERS IN VETERINARY SCIENCE, 2018, 5
[10]   SnapShot: Resident Memory T Cells [J].
Beura, Lalit K. ;
Masopust, David .
CELL, 2014, 157 (06) :1488-+