Bilirubin inhibits the up-regulation of inducible nitric oxide synthase by scavenging reactive oxygen species generated by the toll-like receptor 4-dependent activation of NADPH oxidase
Билирубин ингибирует повышение экспрессии индуцибельной синтазы оксида азота, поглощая активные формы кислорода, образующиеся при зависимой от Toll-подобного рецептора 4 активации НАДФН-оксидазы
2015-07-02
SCID: 54.1/k34k2b26
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HIF-1αNADPH oxidaseToll-like receptor 4bilirubininducible nitric oxide synthase
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Abstract (AI)
It has been previously shown that bilirubin prevents the up-regulation of inducible nitric oxide synthase (iNOS) in response to LPS. The present study examines whether this effect is exerted through modulation of Toll-Like Receptor-4 (TLR4) signaling. LPS-stimulated iNOS and NADPH oxidase (Nox) activity in RAW 264.7 murine macrophages was assessed by measuring cellular nitrate and superoxide ( [Formula: see text] ) production, respectively. The generation of both nitrate and [Formula: see text] in response to LPS was suppressed by TLR4 inhibitors, indicating that activation of iNOS and Nox is TLR4-dependent. While treatment with superoxide dismutase (SOD) and bilirubin effectively abolished LPS-mediated [Formula: see text] production, hydrogen peroxide and nitrate release were inhibited by bilirubin and PEG-catalase, but not SOD, supporting that iNOS activation is primarily dependent upon intracellular H2O2. LPS treatment increased nuclear translocation of the redox-sensitive transcription factor Hypoxia Inducible Factor-1α (HIF-1α), an effect that was abolished by bilirubin. Cells transfected with murine iNOS reporter constructs in which the HIF-1α-specific hypoxia response element was disrupted exhibited a blunted response to LPS, supporting that HIF-1α mediates Nox-dependent iNOS expression. Bilirubin, but not SOD, blocked the cellular production of interferon-β, while interleukin-6 production remained unaffected. These data support that bilirubin inhibits the TLR4-mediated up-regulation of iNOS by preventing activation of HIF-1α through scavenging of Nox-derived reactive oxygen species. Bilirubin also suppresses interferon-β release via a ROS-independent mechanism. These findings characterize potential mechanisms for the anti-inflammatory effects of bilirubin.
Key Findings
1
Bilirubin inhibits interferon-β production through a ROS-independent mechanism while leaving interleukin-6 production unaffected.
2
Bilirubin suppresses LPS-induced superoxide and hydrogen peroxide production by scavenging NADPH oxidase-derived reactive oxygen species.
3
LPS-induced iNOS and NADPH oxidase activation in RAW 264.7 macrophages are dependent on Toll-like receptor 4 signaling.
4
NADPH oxidase-derived reactive oxygen species promote HIF-1α nuclear translocation, which mediates TLR4-dependent iNOS expression.
5
iNOS activation depends primarily on intracellular hydrogen peroxide rather than superoxide, based on inhibition by bilirubin and PEG-catalase but not SOD.
Research Object
TLR4-activated NADPH oxidase and iNOS signaling in LPS-stimulated RAW 264.7 murine macrophages
Research Subject
Bilirubin-mediated suppression of Nox-derived reactive oxygen species, HIF-1α activation, iNOS up-regulation, and interferon-β release
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2015-07-02
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