Impaired IFN-gamma production in IFN regulatory factor-1 knockout mice during endotoxemia is secondary to a loss of both IL-12 and IL-12 receptor expression

Citation
Ca. Salkowski et al., Impaired IFN-gamma production in IFN regulatory factor-1 knockout mice during endotoxemia is secondary to a loss of both IL-12 and IL-12 receptor expression, J IMMUNOL, 165(7), 2000, pp. 3970-3977
Citations number
57
Categorie Soggetti
Immunology
Journal title
JOURNAL OF IMMUNOLOGY
ISSN journal
00221767 → ACNP
Volume
165
Issue
7
Year of publication
2000
Pages
3970 - 3977
Database
ISI
SICI code
0022-1767(20001001)165:7<3970:IIPIIR>2.0.ZU;2-B
Abstract
Mice with a targeted mutation in the gene that encodes the transcription fa ctor IFN regulatory factor-1 (IRF-1) were used to assess the contribution o f IRF-1 to IL-12-dependent and IL-12-independent pathways of IFN-gamma prod uction. In response to LPS, IRF-1(-/-) mice produced less IL-12 p40, IL-12 p35, and IFN-gamma mRNA in the liver than IRF-1(+/+) mice. While pulmonary IFN-gamma mRNA levels were also mitigated in IRF-1(-/-) mice, pulmonary IL- 12 p40 and IL-12 p35 mRNA were not dysregulated. Circulating IL-12 p70 and IFN-gamma levels were profoundly attenuated in LPS-challenged IRF-1(-/-) mi ce. Further analysis revealed a major deficiency in hepatic IL-12R beta 1 a nd IL-12R beta 2 mRNA expression as well as pulmonary IL-12R beta 1 mRNA ex pression in LPS-challenged IRF-1(-/-) mice. In vitro, IFN-gamma up-regulate d IL-12R beta 1 mRNA in macrophages from IRF-1(+/+), but not IRF-1(-/-), mi ce. IFN-gamma-induced IL-12R beta 2 mRNA expression was also diminished in macrophages from IRF-1(-/-) mice. In contrast to IRF-1(+/+) mice, administr ation of exogenous IL-12 to IRF-1(-/-) mice resulted in reduced serum IFN-g amma and hepatic and pulmonary IFN-gamma mRNA, demonstrating that loss of I L-12R results in diminished IL-12 responsiveness. While LPS-challenged IRF- 1(-/-) mice also had reduced IL-15 mRNA levels, serum IL-18 responses were intact. Finally, induction of IRF-1 mRNA by LPS in livers of IFN-gamma knoc kout mice were markedly attenuated, suggesting a feedback amplification loo p. These studies indicate that IRF-1 deficiency disrupts both IL-12-depende nt and -independent pathways of IFN-gamma production and that IRF-1 is a cr itical transcription factor involved in the regulation of not only IL-12, b ut also IL-12R.