4.4 Article

The Proprotein Convertase Subtilisin/Kexin FurinA Regulates Zebrafish Host Response against Mycobacterium marinum

期刊

INFECTION AND IMMUNITY
卷 83, 期 4, 页码 1431-1442

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/IAI.03135-14

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资金

  1. Jane and Aatos Erkko Foundation
  2. Academy of Finland [128623, 135980, 139225, 121003]
  3. Marie Curie International Reintegration Grant within the 7th European Community Framework Programme
  4. Emil Aaltonen Foundation
  5. Sigrid Juselius Foundation
  6. Tampere Tuberculosis Foundation
  7. Competitive Research Funding of the Tampere University Hospital [9M080, 9N056, 9S051, 9M093, 9NO52]
  8. Foundation of the Finnish Anti-Tuberculosis Association
  9. University of Tampere Doctoral Programme in Biomedicine and Biotechnology
  10. City of Tampere
  11. Orion-Farmos Research Foundation
  12. Biocenter Finland

向作者/读者索取更多资源

Tuberculosis is a chronic bacterial disease with a complex pathogenesis. An effective immunity against Mycobacterium tuberculosis requires both the innate and adaptive immune responses, including proper T helper (Th) type 1 cell function. FURIN is a proprotein convertase subtilisin/kexin (PCSK) enzyme, which is highly expressed in Th1 type cells. FURIN expression in T cells is essential for maintaining peripheral immune tolerance, but its role in the innate immunity and infections has remained elusive. Here, we utilized Mycobacterium marinum infection models in zebrafish (Danio rerio) to investigate how furin regulates host responses against mycobacteria. In steady-state furinA(td204e/+) fish reduced furinA mRNA levels associated with low granulocyte counts and elevated Th cell transcription factor expressions. Silencing furin genes reduced the survival of M. marinuminfected zebrafish embryos. A mycobacterial infection upregulated furinA in adult zebrafish, and infected furinA(td204e/+) mutants exhibited a proinflammatory phenotype characterized by elevated tumor necrosis factor a (tnfa), lymphotoxin alpha (lta) and interleukin 17a/f3 (il17a/f3) expression levels. The enhanced innate immune response in the furinA(td204e/+) mutants correlated with a significantly decreased bacterial burden in a chronic M. marinum infection model. Our data show that upregulated furinA expression can serve as a marker for mycobacterial disease, since it inhibits early host responses and consequently promotes bacterial growth in a chronic infection.

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