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The isoenzyme of glutaminyl cyclase is an important regulator of monocyte infiltration under inflammatory conditions

Acute and chronic inflammatory disorders are characterized by detrimental cytokine and chemokine expression. Frequently, the chemotactic activity of cytokines depends on a modified N-terminus of the polypeptide. Among those, the N-terminus of monocyte chemoattractant protein 1 (CCL2 and MCP-1) is mo...

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Autores principales: Cynis, Holger, Hoffmann, Torsten, Friedrich, Daniel, Kehlen, Astrid, Gans, Kathrin, Kleinschmidt, Martin, Rahfeld, Jens-Ulrich, Wolf, Raik, Wermann, Michael, Stephan, Anett, Haegele, Monique, Sedlmeier, Reinhard, Graubner, Sigrid, Jagla, Wolfgang, Müller, Anke, Eichentopf, Rico, Heiser, Ulrich, Seifert, Franziska, Quax, Paul H A, de Vries, Margreet R, Hesse, Isabel, Trautwein, Daniela, Wollert, Ulrich, Berg, Sabine, Freyse, Ernst-Joachim, Schilling, Stephan, Demuth, Hans-Ulrich
Formato: Online Artículo Texto
Lenguaje:English
Publicado: WILEY-VCH Verlag 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3377097/
https://www.ncbi.nlm.nih.gov/pubmed/21774078
http://dx.doi.org/10.1002/emmm.201100158
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author Cynis, Holger
Hoffmann, Torsten
Friedrich, Daniel
Kehlen, Astrid
Gans, Kathrin
Kleinschmidt, Martin
Rahfeld, Jens-Ulrich
Wolf, Raik
Wermann, Michael
Stephan, Anett
Haegele, Monique
Sedlmeier, Reinhard
Graubner, Sigrid
Jagla, Wolfgang
Müller, Anke
Eichentopf, Rico
Heiser, Ulrich
Seifert, Franziska
Quax, Paul H A
de Vries, Margreet R
Hesse, Isabel
Trautwein, Daniela
Wollert, Ulrich
Berg, Sabine
Freyse, Ernst-Joachim
Schilling, Stephan
Demuth, Hans-Ulrich
author_facet Cynis, Holger
Hoffmann, Torsten
Friedrich, Daniel
Kehlen, Astrid
Gans, Kathrin
Kleinschmidt, Martin
Rahfeld, Jens-Ulrich
Wolf, Raik
Wermann, Michael
Stephan, Anett
Haegele, Monique
Sedlmeier, Reinhard
Graubner, Sigrid
Jagla, Wolfgang
Müller, Anke
Eichentopf, Rico
Heiser, Ulrich
Seifert, Franziska
Quax, Paul H A
de Vries, Margreet R
Hesse, Isabel
Trautwein, Daniela
Wollert, Ulrich
Berg, Sabine
Freyse, Ernst-Joachim
Schilling, Stephan
Demuth, Hans-Ulrich
author_sort Cynis, Holger
collection PubMed
description Acute and chronic inflammatory disorders are characterized by detrimental cytokine and chemokine expression. Frequently, the chemotactic activity of cytokines depends on a modified N-terminus of the polypeptide. Among those, the N-terminus of monocyte chemoattractant protein 1 (CCL2 and MCP-1) is modified to a pyroglutamate (pE-) residue protecting against degradation in vivo. Here, we show that the N-terminal pE-formation depends on glutaminyl cyclase activity. The pE-residue increases stability against N-terminal degradation by aminopeptidases and improves receptor activation and signal transduction in vitro. Genetic ablation of the glutaminyl cyclase iso-enzymes QC (QPCT) or isoQC (QPCTL) revealed a major role of isoQC for pE(1)-CCL2 formation and monocyte infiltration. Consistently, administration of QC-inhibitors in inflammatory models, such as thioglycollate-induced peritonitis reduced monocyte infiltration. The pharmacologic efficacy of QC/isoQC-inhibition was assessed in accelerated atherosclerosis in ApoE3*Leiden mice, showing attenuated atherosclerotic pathology following chronic oral treatment. Current strategies targeting CCL2 are mainly based on antibodies or spiegelmers. The application of small, orally available inhibitors of glutaminyl cyclases represents an alternative therapeutic strategy to treat CCL2-driven disorders such as atherosclerosis/restenosis and fibrosis.
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spelling pubmed-33770972012-09-17 The isoenzyme of glutaminyl cyclase is an important regulator of monocyte infiltration under inflammatory conditions Cynis, Holger Hoffmann, Torsten Friedrich, Daniel Kehlen, Astrid Gans, Kathrin Kleinschmidt, Martin Rahfeld, Jens-Ulrich Wolf, Raik Wermann, Michael Stephan, Anett Haegele, Monique Sedlmeier, Reinhard Graubner, Sigrid Jagla, Wolfgang Müller, Anke Eichentopf, Rico Heiser, Ulrich Seifert, Franziska Quax, Paul H A de Vries, Margreet R Hesse, Isabel Trautwein, Daniela Wollert, Ulrich Berg, Sabine Freyse, Ernst-Joachim Schilling, Stephan Demuth, Hans-Ulrich EMBO Mol Med Research Article Acute and chronic inflammatory disorders are characterized by detrimental cytokine and chemokine expression. Frequently, the chemotactic activity of cytokines depends on a modified N-terminus of the polypeptide. Among those, the N-terminus of monocyte chemoattractant protein 1 (CCL2 and MCP-1) is modified to a pyroglutamate (pE-) residue protecting against degradation in vivo. Here, we show that the N-terminal pE-formation depends on glutaminyl cyclase activity. The pE-residue increases stability against N-terminal degradation by aminopeptidases and improves receptor activation and signal transduction in vitro. Genetic ablation of the glutaminyl cyclase iso-enzymes QC (QPCT) or isoQC (QPCTL) revealed a major role of isoQC for pE(1)-CCL2 formation and monocyte infiltration. Consistently, administration of QC-inhibitors in inflammatory models, such as thioglycollate-induced peritonitis reduced monocyte infiltration. The pharmacologic efficacy of QC/isoQC-inhibition was assessed in accelerated atherosclerosis in ApoE3*Leiden mice, showing attenuated atherosclerotic pathology following chronic oral treatment. Current strategies targeting CCL2 are mainly based on antibodies or spiegelmers. The application of small, orally available inhibitors of glutaminyl cyclases represents an alternative therapeutic strategy to treat CCL2-driven disorders such as atherosclerosis/restenosis and fibrosis. WILEY-VCH Verlag 2011-09 /pmc/articles/PMC3377097/ /pubmed/21774078 http://dx.doi.org/10.1002/emmm.201100158 Text en Copyright © 2011 EMBO Molecular Medicine
spellingShingle Research Article
Cynis, Holger
Hoffmann, Torsten
Friedrich, Daniel
Kehlen, Astrid
Gans, Kathrin
Kleinschmidt, Martin
Rahfeld, Jens-Ulrich
Wolf, Raik
Wermann, Michael
Stephan, Anett
Haegele, Monique
Sedlmeier, Reinhard
Graubner, Sigrid
Jagla, Wolfgang
Müller, Anke
Eichentopf, Rico
Heiser, Ulrich
Seifert, Franziska
Quax, Paul H A
de Vries, Margreet R
Hesse, Isabel
Trautwein, Daniela
Wollert, Ulrich
Berg, Sabine
Freyse, Ernst-Joachim
Schilling, Stephan
Demuth, Hans-Ulrich
The isoenzyme of glutaminyl cyclase is an important regulator of monocyte infiltration under inflammatory conditions
title The isoenzyme of glutaminyl cyclase is an important regulator of monocyte infiltration under inflammatory conditions
title_full The isoenzyme of glutaminyl cyclase is an important regulator of monocyte infiltration under inflammatory conditions
title_fullStr The isoenzyme of glutaminyl cyclase is an important regulator of monocyte infiltration under inflammatory conditions
title_full_unstemmed The isoenzyme of glutaminyl cyclase is an important regulator of monocyte infiltration under inflammatory conditions
title_short The isoenzyme of glutaminyl cyclase is an important regulator of monocyte infiltration under inflammatory conditions
title_sort isoenzyme of glutaminyl cyclase is an important regulator of monocyte infiltration under inflammatory conditions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3377097/
https://www.ncbi.nlm.nih.gov/pubmed/21774078
http://dx.doi.org/10.1002/emmm.201100158
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