Resistance of CD7-deficient Mice to Lipopolysaccharide-induced Shock Syndromes

Author:

Sempowski Gregory D.1,Lee David M.1,Scearce Richard M.1,Patel Dhavalkumar D.11,Haynes Barton F.11

Affiliation:

1. From the Division of Rheumatology, Allergy, and Clinical Immunology and the Department of Medicine; and the Department of Immunology and Duke University Arthritis Center, Duke University Medical Center, Durham, North Carolina 27710

Abstract

CD7 is an immunoglobulin superfamily molecule involved in T and natural killer (NK) cell activation and cytokine production. CD7-deficient animals develop normally but have antigen-specific defects in interferon (IFN)-γ production and CD8+ CTL generation. To determine the in vivo role of CD7 in systems dependent on IFN-γ, the response of CD7-deficient mice to lipopolysaccharide (LPS)-induced shock syndromes was studied. In the high-dose LPS-induced shock model, 67% of CD7-deficient mice survived LPS injection, whereas 19% of control C57BL/6 mice survived LPS challenge (P < 0.001). CD7-deficient or C57BL/6 control mice were next injected with low-dose LPS (1 μg plus 8 mg D-galactosamine [D-gal] per mouse) and monitored for survival. All CD7-deficient mice were alive 72 h after injection of LPS compared with 20% of C57BL/6 control mice (P < 0.001). After injection of LPS and D-gal, CD7-deficient mice had decreased serum IFN-γ and tumor necrosis factor (TNF)-α levels compared with control C57BL/6 mice (P < 0.001). Steady-state mRNA levels for IFN-γ and TNF-α in liver tissue were also significantly decreased in CD7-deficient mice compared with controls (P < 0.05). In contrast, CD7-deficient animals had normal liver interleukin (IL)-12, IL-18, and interleukin 1 converting enzyme (ICE) mRNA levels, and CD7-deficient splenocytes had normal IFN-γ responses when stimulated with IL-12 and IL-18 in vitro. NK1.1+/ CD3+ T cells are known to be key effector cells in the pathogenesis of toxic shock. Phenotypic analysis of liver mononuclear cells revealed that CD7-deficient mice had fewer numbers of liver NK1.1+/CD3+ T cells (1.5 ± 0.3 × 105) versus C57BL/6 control mice (3.7 ± 0.8 × 105; P < 0.05), whereas numbers of liver NK1.1+/CD3− NK cells were not different from controls. Thus, targeted disruption of CD7 leads to a selective deficiency of liver NK1.1+/ CD3+ T cells, and is associated with resistance to LPS shock. These data suggest that CD7 is a key molecule in the inflammatory response leading to LPS-induced shock.

Publisher

Rockefeller University Press

Subject

Immunology,Immunology and Allergy

Reference27 articles.

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4. Molecular cloning of two CD7 (T-cell leukemia antigen) cDNAs by a COS cell expression system;Aruffo;EMBO (Eur Mol Biol Organ) J,1987

5. Phenotypic and functional analysis of T-cell precursors in the human fetal liver and thymus: CD7 expression in the early stages of T- and myeloid-cell development;Barcena;Blood,1993

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