SOCS1 is a critical inhibitor of interferon gamma signaling and prevents the potentially fatal neonatal actions of this cytokine

  • Cell. 1999 Sep 3;98(5):597-608. doi: 10.1016/s0092-8674(00)80047-1.
W S Alexander  1 ,  R Starr ,  J E Fenner ,  C L Scott ,  E Handman ,  N S Sprigg ,  J E Corbin ,  A L Cornish ,  R Darwiche ,  C M Owczarek ,  T W Kay ,  N A Nicola ,  P J Hertzog ,  D Metcalf ,  D J Hilton
Affiliations
  • 1. The Walter and Eliza Hall Institute of Medical Research, Victoria, Australia.
Abstract

Mice lacking suppressor of cytokine signaling-1 (SOCS1) develop a complex fatal neonatal disease. In this study, SOCS1-/- mice were shown to exhibit excessive responses typical of those induced by interferon gamma (IFNgamma), were hyperresponsive to Viral Infection, and yielded Macrophages with an enhanced IFNgamma-dependent capacity to kill L. major parasites. The complex disease in SOCS1-/- mice was prevented by administration of anti-IFNgamma antibodies and did not occur in SOCS1-/- mice also lacking the IFNgamma gene. Although IFNgamma is essential for resistance to a variety of infections, the potential toxic action of IFNgamma, particularly in neonatal mice, appears to require regulation. Our data indicate that SOCS1 is a key modulator of IFNgamma action, allowing the protective effects of this cytokine to occur without the risk of associated pathological responses.