Skip to main navigation Skip to search Skip to main content

IL-12p35 induces expansion of IL-10 and IL-35-expressing regulatory B cells and ameliorates autoimmune disease

  • Ivy M. Dambuza
  • , Chang He
  • , Jin Kyeong Choi
  • , Cheng Rong Yu
  • , Renxi Wang
  • , Mary J. Mattapallil
  • , Paul T. Wingfield
  • , Rachel R. Caspi
  • , Charles E. Egwuagu*
  • *Corresponding author for this work
  • National Institutes of Health
  • Sun Yat-Sen University
  • Beijing Institute of Basic Medical Sciences

Research output: Contribution to journalJournal articlepeer-review

Abstract

Interleukin 35 (IL-35) is a heterodimeric cytokine composed of IL-12p35 and Ebi3 subunits. IL-35 suppresses autoimmune diseases while preventing host defense to infection and promoting tumor growth and metastasis by converting resting B and T cells into IL-10-producing and IL-35-producing regulatory B (Breg) and T (Treg) cells. Despite sharing the IL-12p35 subunit, IL-12 (IL-12p35/IL-12p40) promotes inflammatory responses whereas IL-35 (IL-12p35/Ebi3) induces regulatory responses, suggesting that IL-12p35 may have unknown intrinsic immune-regulatory functions regulated by its heterodimeric partner. Here we show that the IL-12p35 subunit has immunoregulatory functions hitherto attributed to IL-35. IL-12p35 suppresses lymphocyte proliferation, induces expansion of IL-10-expressing and IL-35-expressing B cells and ameliorates autoimmune uveitis in mice by antagonizing pathogenic Th17 responses. Recapitulation of essential immunosuppressive activities of IL-35 indicates that IL-12p35 may be utilized for in vivo expansion of Breg cells and autologous Breg cell immunotherapy. Furthermore, our uveitis data suggest that intrinsic immunoregulatory activities of other single chain IL-12 subunits might be exploited to treat other autoimmune diseases.

Original languageEnglish
Article number719
JournalNature Communications
Volume8
Issue number1
DOIs
StatePublished - 2017.12.1

Fingerprint

Dive into the research topics of 'IL-12p35 induces expansion of IL-10 and IL-35-expressing regulatory B cells and ameliorates autoimmune disease'. Together they form a unique fingerprint.

Cite this