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Siglec-H-Deficient Mice Show Enhanced Type I IFN Responses, but Do Not Develop Autoimmunity After Influenza or LCMV Infections

  • Nadine Szumilas
  • , Odilia B.J. Corneth
  • , Christian H.K. Lehmann
  • , Heike Schmitt
  • , Svenia Cunz
  • , Jolie G. Cullen
  • , Talyn Chu
  • , Anita Marosan
  • , Attila Mócsai
  • , Vladimir Benes
  • , Dietmar Zehn
  • , Diana Dudziak
  • , Rudi W. Hendriks
  • , Lars Nitschke*
  • *Corresponding author for this work
  • Friedrich-Alexander University Erlangen-Nürnberg
  • University Hospital Erlangen
  • Technical University of Munich
  • Semmelweis University
  • European Molecular Biology Laboratory

Research output: Contribution to journalArticleAcademicpeer-review

14 Citations (Scopus)
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Abstract

Siglec-H is a DAP12-associated receptor on plasmacytoid dendritic cells (pDCs) and microglia. Siglec-H inhibits TLR9-induced IFN-α production by pDCs. Previously, it was found that Siglec-H-deficient mice develop a lupus-like severe autoimmune disease after persistent murine cytomegalovirus (mCMV) infection. This was due to enhanced type I interferon responses, including IFN-α. Here we examined, whether other virus infections can also induce autoimmunity in Siglec-H-deficient mice. To this end we infected Siglec-H-deficient mice with influenza virus or with Lymphocytic Choriomeningitis virus (LCMV) clone 13. With both types of viruses we did not observe induction of autoimmune disease in Siglec-H-deficient mice. This can be explained by the fact that both types of viruses are ssRNA viruses that engage TLR7, rather than TLR9. Also, Influenza causes an acute infection that is rapidly cleared and the chronicity of LCMV clone 13 may not be sufficient and may rather suppress pDC functions. Siglec-H inhibited exclusively TLR-9 driven type I interferon responses, but did not affect type II or type III interferon production by pDCs. Siglec-H-deficient pDCs showed impaired Hck expression, which is a Src-family kinase expressed in myeloid cells, and downmodulation of the chemokine receptor CCR9, that has important functions for pDCs. Accordingly, Siglec-H-deficient pDCs showed impaired migration towards the CCR9 ligand CCL25. Furthermore, autoimmune-related genes such as Klk1 and DNase1l3 are downregulated in Siglec-H-deficient pDCs as well. From these findings we conclude that Siglec-H controls TLR-9-dependent, but not TLR-7 dependent inflammatory responses after virus infections and regulates chemokine responsiveness of pDCs.

Original languageEnglish
Article number698420
JournalFrontiers in Immunology
Volume12
DOIs
Publication statusPublished - 23 Aug 2021

Bibliographical note

Funding Information:
This work was supported by the DFG through CRC1181 (project B06 to LN and A07 to DD) and RTG2504 (project B02 to CL and DD), Dutch Arthritis Association to RH and an ERC grant (ERC-2017-CoG - 772473 ToCCaTa) to DZ.

Publisher Copyright:
© Copyright © 2021 Szumilas, Corneth, Lehmann, Schmitt, Cunz, Cullen, Chu, Marosan, Mócsai, Benes, Zehn, Dudziak, Hendriks and Nitschke.

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