Rousette Bat Dendritic Cells Overcome Marburg Virus-Mediated Antiviral Responses by Upregulation of Interferon-Related Genes While Downregulating Proinflammatory Disease Mediators.

Joseph Prescott, Jonathan C Guito, Jessica R Spengler, Catherine E Arnold, Amy J Schuh, Brian R Amman, Tara K Sealy, Lisa W Guerrero, Gustavo F Palacios, Mariano Sanchez-Lockhart, Cesar G Albariño, Jonathan S Towner
Author Information
  1. Joseph Prescott: Center for Biological Threats and Special Pathogens, Robert Koch Institute, Berlin, Germany prescottj@rki.de jit8@cdc.gov.
  2. Jonathan C Guito: Viral Special Pathogens Branch, Centers for Disease Control and Prevention, Atlanta, Georgia, USA.
  3. Jessica R Spengler: Viral Special Pathogens Branch, Centers for Disease Control and Prevention, Atlanta, Georgia, USA. ORCID
  4. Catherine E Arnold: Diagnostic Systems Division, U.S. Army Medical Research Institute of Infectious Diseases, Fort Detrick, Maryland, USA.
  5. Amy J Schuh: Viral Special Pathogens Branch, Centers for Disease Control and Prevention, Atlanta, Georgia, USA.
  6. Brian R Amman: Viral Special Pathogens Branch, Centers for Disease Control and Prevention, Atlanta, Georgia, USA.
  7. Tara K Sealy: Viral Special Pathogens Branch, Centers for Disease Control and Prevention, Atlanta, Georgia, USA.
  8. Lisa W Guerrero: Viral Special Pathogens Branch, Centers for Disease Control and Prevention, Atlanta, Georgia, USA.
  9. Gustavo F Palacios: Center for Genome Sciences, U.S. Army Medical Research Institute of Infectious Diseases, Fort Detrick, Maryland, USA.
  10. Mariano Sanchez-Lockhart: Center for Genome Sciences, U.S. Army Medical Research Institute of Infectious Diseases, Fort Detrick, Maryland, USA.
  11. Cesar G Albariño: Viral Special Pathogens Branch, Centers for Disease Control and Prevention, Atlanta, Georgia, USA.
  12. Jonathan S Towner: Viral Special Pathogens Branch, Centers for Disease Control and Prevention, Atlanta, Georgia, USA prescottj@rki.de jit8@cdc.gov.

Abstract

Dysregulated and maladaptive immune responses are at the forefront of human diseases caused by infection with zoonotic viral hemorrhagic fever viruses. Elucidating mechanisms of how the natural animal reservoirs of these viruses coexist with these agents without overt disease, while permitting sufficient replication to allow for transmission and maintenance in a population, is important for understanding the viral ecology and spillover to humans. The Egyptian rousette bat (ERB) has been identified as a reservoir for Marburg virus (MARV), a filovirus and the etiological agent of the highly lethal Marburg virus disease. Little is known regarding how these bats immunologically respond to MARV infection. In humans, macrophages and dendritic cells (DCs) are primary targets of infection, and their dysregulation is thought to play a central role in filovirus diseases, by disturbing their normal functions as innate sensors and adaptive immune response facilitators while serving as amplification and dissemination agents for the virus. The infection status and responses to MARV in bat myeloid-lineage cells are uncharacterized and likely represent an important modulator of the bat's immune response to MARV infection. Here, we generate DCs from the bone marrow of rousette bats. Infection with a bat isolate of MARV resulted in a low level of transcription in these cells and significantly downregulated DC maturation and adaptive immune-stimulatory pathways while simultaneously upregulating interferon-related pathogen-sensing pathways. This study provides a first insight into how the bat immune response is directed toward preventing aberrant inflammatory responses while mounting an antiviral response to defend against MARV infection. Marburg viruses (MARVs) cause severe human disease resulting from aberrant immune responses. Dendritic cells (DCs) are primary targets of infection and are dysregulated by MARV. Dysregulation of DCs facilitates MARV replication and virus dissemination and influences downstream immune responses that result in immunopathology. Egyptian rousette bats (ERBs) are natural reservoirs of MARV, and infection results in virus replication and shedding, with asymptomatic control of the virus within weeks. The mechanisms that bats employ to appropriately respond to infection while avoiding disease are unknown. Because DC infection and modulation are important early events in human disease, we measured the transcriptional responses of ERB DCs to MARV. The significance of this work is in identifying cell type-specific coevolved responses between ERBs and MARV, which gives insight into how bat reservoirs are able to harbor MARV and permit viral replication, allowing transmission and maintenance in the population while simultaneously preventing immunopathogenesis.

Keywords

References

  1. PLoS One. 2015 Mar 23;10(3):e0121546 [PMID: 25799053]
  2. J Virol. 2011 Sep;85(17):9060-8 [PMID: 21734050]
  3. J Virol. 2015 Aug;89(15):7567-83 [PMID: 25972536]
  4. Viruses. 2014 Dec;6(12):4880-901 [PMID: 25494448]
  5. Sci Rep. 2016 Dec 09;6:38597 [PMID: 27934903]
  6. PLoS One. 2018 Aug 2;13(8):e0201827 [PMID: 30071116]
  7. PLoS Pathog. 2011 Oct;7(10):e1002304 [PMID: 22039362]
  8. Nat Rev Immunol. 2017 Mar;17(3):195-207 [PMID: 28111475]
  9. Immunity. 2014 Aug 21;41(2):270-82 [PMID: 25065622]
  10. Viruses. 2011 Sep;3(9):1634-49 [PMID: 21994800]
  11. J Clin Virol. 2015 Mar;64:111-9 [PMID: 25660265]
  12. Mediators Inflamm. 2012;2012:819636 [PMID: 22315510]
  13. Genome Biol. 2006;7(12):243 [PMID: 17201934]
  14. Nat Commun. 2017 Feb 13;8:14446 [PMID: 28194016]
  15. Philos Trans R Soc Lond B Biol Sci. 2017 May 26;372(1721):null [PMID: 28396469]
  16. J Virol. 2015 Oct;89(19):9865-74 [PMID: 26202234]
  17. Vet Pathol. 2010 Sep;47(5):831-51 [PMID: 20807825]
  18. PLoS Pathog. 2009 Jul;5(7):e1000536 [PMID: 19649327]
  19. J Virol. 2001 Nov;75(22):11025-33 [PMID: 11602743]
  20. Trans R Soc Trop Med Hyg. 2015 Jun;109(6):366-78 [PMID: 25820266]
  21. Eur J Immunol. 2009 Dec;39(12):3331-42 [PMID: 19750479]
  22. Viruses. 2018 Nov 02;10(11): [PMID: 30400182]
  23. iScience. 2019 Nov 15;22:240-255 [PMID: 31786520]
  24. Cell. 2001 Aug 10;106(3):259-62 [PMID: 11509173]
  25. J Wildl Dis. 2015 Jan;51(1):113-24 [PMID: 25375951]
  26. BMC Immunol. 2004 Sep 30;5:23 [PMID: 15458574]
  27. Immunology. 2010 Jan;129(1):133-45 [PMID: 19909375]
  28. Vaccines (Basel). 2017 Sep 20;5(3):null [PMID: 28930167]
  29. Viruses. 2019 Mar 02;11(3): [PMID: 30832364]
  30. J Virol. 2013 Jul;87(13):7471-85 [PMID: 23616668]
  31. Microbiol Aust. 2017 Mar;38(1):12-16 [PMID: 28603449]
  32. Nat Microbiol. 2019 Mar;4(3):390-395 [PMID: 30617348]
  33. Cell. 2018 May 17;173(5):1098-1110.e18 [PMID: 29706541]
  34. Annu Rev Immunol. 2000;18:767-811 [PMID: 10837075]
  35. Am J Pathol. 2003 Dec;163(6):2347-70 [PMID: 14633608]
  36. Nat Microbiol. 2018 Oct;3(10):1084-1089 [PMID: 30150734]
  37. Proc Natl Acad Sci U S A. 2007 Sep 25;104(39):15496-501 [PMID: 17875986]
  38. Vet Immunol Immunopathol. 2005 Feb 10;103(3-4):163-72 [PMID: 15621303]
  39. Immunology. 2018 Dec;155(4):477-490 [PMID: 30098206]
  40. J Infect Dis. 2003 Dec 1;188(11):1630-8 [PMID: 14639532]
  41. J Virol. 1996 Apr;70(4):2208-14 [PMID: 8642644]
  42. Proc Natl Acad Sci U S A. 2007 Sep 25;104(39):15502-7 [PMID: 17878294]
  43. Virology. 2015 May;479-480:122-30 [PMID: 25843618]

MeSH Term

Animals
Cells, Cultured
Chiroptera
Dendritic Cells
Gene Expression Regulation
Host-Pathogen Interactions
Immunity, Innate
Immunologic Factors
Interferons
Marburgvirus

Chemicals

Immunologic Factors
Interferons

Word Cloud

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