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Biological Chemistry

Editor-in-Chief: Brüne, Bernhard

Editorial Board: Buchner, Johannes / Lei, Ming / Ludwig, Stephan / Sies, Helmut / Thomas, Douglas D. / Turk, Boris / Wittinghofer, Alfred

12 Issues per year


IMPACT FACTOR 2016: 3.273

CiteScore 2017: 2.81

SCImago Journal Rank (SJR) 2017: 1.562
Source Normalized Impact per Paper (SNIP) 2017: 0.705

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1437-4315
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Volume 393, Issue 12

Issues

Mast cells limit extracellular levels of IL-13 via a serglycin proteoglycan-serine protease axis

Ida Waern
  • Department of Anatomy, Physiology, and Biochemistry, Swedish University of Agricultural Sciences, The Biomedical Centre, Box 575, SE-75123 Uppsala, Sweden
  • Other articles by this author:
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/ Iulia Karlsson
  • Department of Anatomy, Physiology, and Biochemistry, Swedish University of Agricultural Sciences, The Biomedical Centre, Box 575, SE-75123 Uppsala, Sweden
  • Other articles by this author:
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/ Michael Thorpe / Susan M. Schlenner
  • Dana-Farber Cancer Institute, Department of Cancer Immunology and AIDS, Harvard Medical School, 02115 Boston, Massachusetts, USA
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/ Thorsten B. Feyerabend / Hans-Reimer Rodewald / Magnus Åbrink / Lars Hellman / Gunnar Pejler
  • Department of Anatomy, Physiology, and Biochemistry, Swedish University of Agricultural Sciences, The Biomedical Centre, Box 575, SE-75123 Uppsala, Sweden
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/ Sara Wernersson
  • Corresponding author
  • Department of Anatomy, Physiology, and Biochemistry, Swedish University of Agricultural Sciences, The Biomedical Centre, Box 575, SE-75123 Uppsala, Sweden
  • Email
  • Other articles by this author:
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Published Online: 2012-11-13 | DOI: https://doi.org/10.1515/hsz-2012-0189

Abstract

Mast cell (MC) granules contain large amounts of proteases of the chymase, tryptase and carboxypeptidase A (MC-CPA) type that are stored in complex with serglycin, a proteoglycan with heparin side chains. Hence, serglycin-protease complexes are released upon MC degranulation and may influence local inflammation. Here we explored the possibility that a serglycin-protease axis may regulate levels of IL-13, a cytokine involved in allergic asthma. Indeed, we found that wild-type MCs efficiently degraded exogenous or endogenously produced IL-13 upon degranulation, whereas serglycin–/– MCs completely lacked this ability. Moreover, MC-mediated IL-13 degradation was blocked both by a serine protease inhibitor and by a heparin antagonist, which suggests that IL-13 degradation is catalyzed by serglycin-dependent serine proteases and that optimal IL-13 degradation is dependent on both the serglycin and the protease component of the serglycin-protease complex. Moreover, IL-13 degradation was abrogated in MC-CPA–/– MC cultures, but was normal in cultures of MCs with an inactivating mutation of MC-CPA, which suggests that the IL-13-degrading serine proteases rely on MC-CPA protein. Together, our data implicate a serglycin-serine protease axis in the regulation of extracellular levels of IL-13. Reduction of IL-13 levels through this mechanism possibly can provide a protective function in the context of allergic inflammation.

Keywords: allergy; cytokine; mast cell; proteoglycan; serine protease

About the article

Corresponding author: Sara Wernersson, Department of Anatomy, Physiology, and Biochemistry, Swedish University of Agricultural Sciences, The Biomedical Centre, Box 575, SE-75123 Uppsala, Sweden


Received: 2012-05-02

Accepted: 2012-06-19

Published Online: 2012-11-13

Published in Print: 2012-12-01


Citation Information: Biological Chemistry, Volume 393, Issue 12, Pages 1555–1567, ISSN (Online) 1437-4315, ISSN (Print) 1431-6730, DOI: https://doi.org/10.1515/hsz-2012-0189.

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