Regulation of nuclear factor-kappa B and its inhibitor I kappa B- alpha/MAD-3 in monocytes by Mycobacterium tuberculosis and during human tuberculosis

Blood monocytes from patients with active tuberculosis are activated in vivo, as evidenced by an increase in the stimulated release of proinflammatory cytokines, such as TNF-alpha, and the spontaneous expression of IL-2R. Further, monocytes from patients demonstrate an augmented susceptibility to a...

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Veröffentlicht in:The Journal of immunology (1950) 1997-10, Vol.159 (8), p.4109-4116
Hauptverfasser: Toossi, Z, Hamilton, BD, Phillips, MH, Averill, LE, Ellner, JJ, Salvekar, A
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container_end_page 4116
container_issue 8
container_start_page 4109
container_title The Journal of immunology (1950)
container_volume 159
creator Toossi, Z
Hamilton, BD
Phillips, MH
Averill, LE
Ellner, JJ
Salvekar, A
description Blood monocytes from patients with active tuberculosis are activated in vivo, as evidenced by an increase in the stimulated release of proinflammatory cytokines, such as TNF-alpha, and the spontaneous expression of IL-2R. Further, monocytes from patients demonstrate an augmented susceptibility to a productive infection with HIV-1 in vitro. Mycobacterium tuberculosis and its components are strong signals to activate monocytes to production of cytokines. In this study we examined the basis of activation of monocytes during active tuberculosis and by M. tuberculosis. We found a constitutive degradation of I kappa B-alpha, the major cytoplasmic inhibitor of nuclear factor kappa B (NF-kappa B), in freshly isolated PBMC and monocytes from patients with tuberculosis. In contrast, I kappa B-alpha levels in PBMC and monocytes from healthy subjects or from patients with nontuberculous pulmonary conditions were intact. Further, by electrophoretic mobility shift assay, NF-kappa B was activated in monocytes from tuberculous patients. The expression of I kappa B-alpha gene, which is responsive to activation by NF-kappa B, was up-regulated in PBMC and monocytes from patients, but not in mononuclear cells from healthy subjects or those with nontuberculous lung diseases. By contrast, the expression of other adherence-associated early genes, such as IL-8 and IL-1 beta, was not up-regulated in PBMC of tuberculous patients. Further, M. tuberculosis and its tuberculin, purified protein derivative, induced the degradation of I kappa B-alpha and the expression of I kappa B-alpha mRNA, and purified protein derivative induced the activation of NF-kappa B in monocytes.
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Further, monocytes from patients demonstrate an augmented susceptibility to a productive infection with HIV-1 in vitro. Mycobacterium tuberculosis and its components are strong signals to activate monocytes to production of cytokines. In this study we examined the basis of activation of monocytes during active tuberculosis and by M. tuberculosis. We found a constitutive degradation of I kappa B-alpha, the major cytoplasmic inhibitor of nuclear factor kappa B (NF-kappa B), in freshly isolated PBMC and monocytes from patients with tuberculosis. In contrast, I kappa B-alpha levels in PBMC and monocytes from healthy subjects or from patients with nontuberculous pulmonary conditions were intact. Further, by electrophoretic mobility shift assay, NF-kappa B was activated in monocytes from tuberculous patients. 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subjects AIDS/HIV
DNA-Binding Proteins - biosynthesis
DNA-Binding Proteins - genetics
DNA-Binding Proteins - metabolism
Gene Expression Regulation - immunology
Humans
I-kappa B Proteins
Monocytes - metabolism
Monocytes - microbiology
Mycobacterium tuberculosis
Mycobacterium tuberculosis - immunology
NF-kappa B - antagonists & inhibitors
NF-kappa B - metabolism
NF-KappaB Inhibitor alpha
RNA, Messenger - biosynthesis
Tuberculin - pharmacology
Tuberculosis - immunology
Tuberculosis - metabolism
title Regulation of nuclear factor-kappa B and its inhibitor I kappa B- alpha/MAD-3 in monocytes by Mycobacterium tuberculosis and during human tuberculosis
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