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Published on: July 26, 2017
SOCS2-induced proteasome-dependent TRAF6 degradation: a common anti-inflammatory pathway for control of innate immune
Cortez McBerry1, Rosa Maria Salazar Gonzalez, Nathaniel Shryock
1Divisions of Molecular Immunology and Pulmonary Medicine, Cincinnati Children's Hospital Medical Center, Cincinnati, Ohio, United States of America.
Abstract:
Pattern recognition receptors and receptors for pro-inflammatory cytokines provide critical signals to drive the development of protective immunity to infection. Therefore, counter-regulatory pathways are required to ensure that overwhelming inflammation harm host tissues. Previously, we showed that lipoxins modulate immune response during infection, restraining inflammation during infectious diseases in an Aryl hydrocarbon receptor (AhR)/suppressors of cytokine signaling (SOCS)2-dependent-manner. Recently, Indoleamine-pyrrole 2,3- dioxygenase (IDO)-derived tryptophan metabolites, including L-kynurenine, were also shown to be involved in several counter-regulatory mechanisms. Herein, we addressed whether the intracellular molecular events induced by lipoxins mediating control of innate immune signaling are part of a common regulatory pathway also shared by L-kynurenine exposure. We demonstrate that Tumor necrosis factor receptor-associated factor (TRAF)6--member of a family of adapter molecules that couple the TNF receptor and interleukin-1 receptor/Toll-like receptor families to intracellular signaling events essential for the development of immune responses--is targeted by both lipoxins and L-kynurenine via an AhR/SOCS2-dependent pathway. Furthermore, we show that LXA₄- and L-kynurenine-induced AhR activation, its subsequent nuclear translocation, leading SOCS2 expression and TRAF6 Lys47-linked poly-ubiquitination and proteosome-mediated degradation of the adapter proteins. The in vitro consequences of such molecular interactions included inhibition of TLR- and cytokine receptor-driven signal transduction and cytokine production. Subsequently, in vivo proteosome inhibition led to unresponsiveness to lipoxins, as well as to uncontrolled pro-inflammatory reactions and elevated mortality during toxoplasmosis. In summary, our results establish proteasome degradation of TRAF6 as a key molecular target for the anti-inflammatory pathway triggered by lipoxins and L-kynurenine, critical counter-regulatory mediators in the innate and adaptive immune systems.
Insights
Lipoxins and L-kynurenine control inflammation by degrading TRAF6 via an AhR/SOCS2 pathway. This mechanism is crucial for immune homeostasis and preventing excessive inflammation during infection.
Area of Science:
- Immunology
- Molecular Biology
- Inflammation Research
Background:
- Pattern recognition and cytokine receptors initiate immunity but require counter-regulation to prevent tissue damage.
- Lipoxins and L-kynurenine are known regulators of immune responses.
- Aryl hydrocarbon receptor (AhR) and SOCS2 mediate lipoxin's anti-inflammatory effects.
Purpose of the Study:
- To investigate if lipoxins and L-kynurenine share common regulatory pathways.
- To identify the molecular targets of lipoxin- and L-kynurenine-mediated immune control.
Main Methods:
- Investigated the role of Tumor necrosis factor receptor-associated factor (TRAF)6 in lipoxin and L-kynurenine signaling.
- Utilized in vitro assays to assess signal transduction and cytokine production.
- Employed in vivo proteasome inhibition models during toxoplasmosis.
Main Results:
- Lipoxins and L-kynurenine target TRAF6 through an AhR/SOCS2-dependent pathway.
- Activation of AhR leads to SOCS2 expression and TRAF6 degradation.
- Inhibition of proteasomes abrogated lipoxin effects and exacerbated inflammation in vivo.
Conclusions:
- Proteasome-mediated degradation of TRAF6 is a key mechanism for anti-inflammatory pathways.
- Lipoxins and L-kynurenine act via a shared pathway involving TRAF6 degradation.
- This pathway is critical for immune system counter-regulation and preventing excessive inflammation.
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