Cargando…
Growth differentiation factor 15 deficiency protects against atherosclerosis by attenuating CCR2-mediated macrophage chemotaxis
Growth differentiation factor (GDF) 15 is a member of the transforming growth factor β (TGF-β) superfamily, which operates in acute phase responses through a currently unknown receptor. Elevated GDF-15 serum levels were recently identified as a risk factor for acute coronary syndromes. We show that...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Texto |
Lenguaje: | English |
Publicado: |
The Rockefeller University Press
2011
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3039852/ https://www.ncbi.nlm.nih.gov/pubmed/21242297 http://dx.doi.org/10.1084/jem.20100370 |
_version_ | 1782198244596514816 |
---|---|
author | de Jager, Saskia C.A. Bermúdez, Beatriz Bot, Ilze Koenen, Rory R. Bot, Martine Kavelaars, Annemieke de Waard, Vivian Heijnen, Cobi J. Muriana, Francisco J.G. Weber, Christian van Berkel, Theo J.C. Kuiper, Johan Lee, Se-Jin Abia, Rocio Biessen, Erik A.L. |
author_facet | de Jager, Saskia C.A. Bermúdez, Beatriz Bot, Ilze Koenen, Rory R. Bot, Martine Kavelaars, Annemieke de Waard, Vivian Heijnen, Cobi J. Muriana, Francisco J.G. Weber, Christian van Berkel, Theo J.C. Kuiper, Johan Lee, Se-Jin Abia, Rocio Biessen, Erik A.L. |
author_sort | de Jager, Saskia C.A. |
collection | PubMed |
description | Growth differentiation factor (GDF) 15 is a member of the transforming growth factor β (TGF-β) superfamily, which operates in acute phase responses through a currently unknown receptor. Elevated GDF-15 serum levels were recently identified as a risk factor for acute coronary syndromes. We show that GDF-15 expression is up-regulated as disease progresses in murine atherosclerosis and primarily colocalizes with plaque macrophages. Hematopoietic GDF-15 deficiency in low density lipoprotein receptor(−/−) mice led to impaired initial lesion formation and increased collagen in later lesions. Although lesion burden in GDF-15(−/−) chimeras was unaltered, plaques had reduced macrophage infiltrates and decreased necrotic core formation, all features of improved plaque stability. In vitro studies pointed to a TGFβRII-dependent regulatory role of GDF-15 in cell death regulation. Importantly, GDF-15(−/−) macrophages displayed reduced CCR2 expression, whereas GDF-15 promoted macrophage chemotaxis in a strictly CCR2- and TGFβRII-dependent manner, a phenomenon which was not observed in G protein–coupled receptor kinase 2(+/−) macrophages. In conclusion, GDF-15 deletion has a beneficial effect both in early and later atherosclerosis by inhibition of CCR2-mediated chemotaxis and by modulating cell death. Our study is the first to identify GDF-15 as an acute phase modifier of CCR2/TGFβRII-dependent inflammatory responses to vascular injury. |
format | Text |
id | pubmed-3039852 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2011 |
publisher | The Rockefeller University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-30398522011-08-14 Growth differentiation factor 15 deficiency protects against atherosclerosis by attenuating CCR2-mediated macrophage chemotaxis de Jager, Saskia C.A. Bermúdez, Beatriz Bot, Ilze Koenen, Rory R. Bot, Martine Kavelaars, Annemieke de Waard, Vivian Heijnen, Cobi J. Muriana, Francisco J.G. Weber, Christian van Berkel, Theo J.C. Kuiper, Johan Lee, Se-Jin Abia, Rocio Biessen, Erik A.L. J Exp Med Brief Definitive Report Growth differentiation factor (GDF) 15 is a member of the transforming growth factor β (TGF-β) superfamily, which operates in acute phase responses through a currently unknown receptor. Elevated GDF-15 serum levels were recently identified as a risk factor for acute coronary syndromes. We show that GDF-15 expression is up-regulated as disease progresses in murine atherosclerosis and primarily colocalizes with plaque macrophages. Hematopoietic GDF-15 deficiency in low density lipoprotein receptor(−/−) mice led to impaired initial lesion formation and increased collagen in later lesions. Although lesion burden in GDF-15(−/−) chimeras was unaltered, plaques had reduced macrophage infiltrates and decreased necrotic core formation, all features of improved plaque stability. In vitro studies pointed to a TGFβRII-dependent regulatory role of GDF-15 in cell death regulation. Importantly, GDF-15(−/−) macrophages displayed reduced CCR2 expression, whereas GDF-15 promoted macrophage chemotaxis in a strictly CCR2- and TGFβRII-dependent manner, a phenomenon which was not observed in G protein–coupled receptor kinase 2(+/−) macrophages. In conclusion, GDF-15 deletion has a beneficial effect both in early and later atherosclerosis by inhibition of CCR2-mediated chemotaxis and by modulating cell death. Our study is the first to identify GDF-15 as an acute phase modifier of CCR2/TGFβRII-dependent inflammatory responses to vascular injury. The Rockefeller University Press 2011-02-14 /pmc/articles/PMC3039852/ /pubmed/21242297 http://dx.doi.org/10.1084/jem.20100370 Text en © 2011 de Jager et al. This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 3.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/3.0/). |
spellingShingle | Brief Definitive Report de Jager, Saskia C.A. Bermúdez, Beatriz Bot, Ilze Koenen, Rory R. Bot, Martine Kavelaars, Annemieke de Waard, Vivian Heijnen, Cobi J. Muriana, Francisco J.G. Weber, Christian van Berkel, Theo J.C. Kuiper, Johan Lee, Se-Jin Abia, Rocio Biessen, Erik A.L. Growth differentiation factor 15 deficiency protects against atherosclerosis by attenuating CCR2-mediated macrophage chemotaxis |
title | Growth differentiation factor 15 deficiency protects against atherosclerosis by attenuating CCR2-mediated macrophage chemotaxis |
title_full | Growth differentiation factor 15 deficiency protects against atherosclerosis by attenuating CCR2-mediated macrophage chemotaxis |
title_fullStr | Growth differentiation factor 15 deficiency protects against atherosclerosis by attenuating CCR2-mediated macrophage chemotaxis |
title_full_unstemmed | Growth differentiation factor 15 deficiency protects against atherosclerosis by attenuating CCR2-mediated macrophage chemotaxis |
title_short | Growth differentiation factor 15 deficiency protects against atherosclerosis by attenuating CCR2-mediated macrophage chemotaxis |
title_sort | growth differentiation factor 15 deficiency protects against atherosclerosis by attenuating ccr2-mediated macrophage chemotaxis |
topic | Brief Definitive Report |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3039852/ https://www.ncbi.nlm.nih.gov/pubmed/21242297 http://dx.doi.org/10.1084/jem.20100370 |
work_keys_str_mv | AT dejagersaskiaca growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT bermudezbeatriz growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT botilze growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT koenenroryr growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT botmartine growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT kavelaarsannemieke growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT dewaardvivian growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT heijnencobij growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT murianafranciscojg growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT weberchristian growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT vanberkeltheojc growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT kuiperjohan growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT leesejin growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT abiarocio growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis AT biessenerikal growthdifferentiationfactor15deficiencyprotectsagainstatherosclerosisbyattenuatingccr2mediatedmacrophagechemotaxis |