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Phosphocholine-Modified Macromolecules and Canonical Nicotinic Agonists Inhibit ATP-Induced IL-1 beta Release

Hecker, Andreas (författare)
University of Giessen, Germany
Kuellmar, Mira (författare)
University of Giessen, Germany
Wilker, Sigrid (författare)
University of Giessen, Germany
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Richter, Katrin (författare)
University of Giessen, Germany; University of Giessen, Germany
Zakrzewicz, Anna (författare)
University of Giessen, Germany
Atanasova, Srebrena (författare)
University of Giessen, Germany
Mathes, Verena (författare)
University of Giessen, Germany
Timm, Thomas (författare)
University of Giessen, Germany
Lerner, Sabrina (författare)
University of Giessen, Germany
Klein, Jochen (författare)
Goethe University of Frankfurt, Germany
Kaufmann, Andreas (författare)
University of Marburg, Germany
Bauer, Stefan (författare)
University of Marburg, Germany
Padberg, Winfried (författare)
University of Giessen, Germany
Kummer, Wolfgang (författare)
University of Giessen, Germany
Janciauskiene, Sabina (författare)
Hannover Medical Sch, Germany
Fronius, Martin (författare)
University of Giessen, Germany; University of Otago, New Zealand
Schweda, Elke (författare)
Linköpings universitet,Kemi,Tekniska fakulteten
Lochnit, Guenter (författare)
University of Giessen, Germany
Grau, Veronika (författare)
University of Giessen, Germany
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 (creator_code:org_t)
2015-09-01
2015
Engelska.
Ingår i: Journal of Immunology. - : AMER ASSOC IMMUNOLOGISTS. - 0022-1767 .- 1550-6606. ; 195:5, s. 2325-2334
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • IL-1 beta is a potent proinflammatory cytokine of the innate immune system that is involved in host defense against infection. However, increased production of IL-1 beta plays a pathogenic role in various inflammatory diseases, such as rheumatoid arthritis, gout, sepsis, stroke, and transplant rejection. To prevent detrimental collateral damage, IL-1 beta release is tightly controlled and typically requires two consecutive danger signals. LPS from Gram-negative bacteria is a prototypical first signal inducing pro-IL-1 beta synthesis, whereas extracellular ATP is a typical second signal sensed by the ATP receptor P2X7 that triggers activation of the NLRP3-containing inflammasome, proteolytic cleavage of pro-IL-1 beta by caspase-1, and release of mature IL-1 beta. Mechanisms controlling IL-1 beta release, even in the presence of both danger signals, are needed to protect from collateral damage and are of therapeutic interest. In this article, we show that acetylcholine, choline, phosphocholine, phosphocholine-modified LPS from Haemophilus influenzae, and phosphocholine-modified protein efficiently inhibit ATP-mediated IL-1 beta release in human and rat monocytes via nicotinic acetylcholine receptors containing subunits alpha 7, alpha 9, and/or alpha 10. Of note, we identify receptors for phosphocholine-modified macromolecules that are synthesized by microbes and eukaryotic parasites and are well-known modulators of the immune system. Our data suggest that an endogenous anti-inflammatory cholinergic control mechanism effectively controls ATP-mediated release of IL-1 beta and that the same mechanism is used by symbionts and misused by parasites to evade innate immune responses of the host.

Ämnesord

NATURVETENSKAP  -- Kemi (hsv//swe)
NATURAL SCIENCES  -- Chemical Sciences (hsv//eng)

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