EDA-Fibronectin Originating from Osteoblasts Inhibits the Immune Response against Cancer.

Osteoblasts lining the inner surface of bone support hematopoietic stem cell differentiation by virtue of proximity to the bone marrow. The osteoblasts also modify their own differentiation by producing various isoforms of fibronectin (FN). Despite evidence for immune regulation by osteoblasts, ther...

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Main Authors: Stephanie Rossnagl, Eva Altrock, Carla Sens, Sabrina Kraft, Katrin Rau, Michael D Milsom, Thomas Giese, Yvonne Samstag, Inaam A Nakchbandi
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-09-01
Series:PLoS Biology
Online Access:http://europepmc.org/articles/PMC5031442?pdf=render
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spelling doaj-4f2a5c63200e4bb7acb0cf958ac76cb62021-07-02T03:59:57ZengPublic Library of Science (PLoS)PLoS Biology1544-91731545-78852016-09-01149e100256210.1371/journal.pbio.1002562EDA-Fibronectin Originating from Osteoblasts Inhibits the Immune Response against Cancer.Stephanie RossnaglEva AltrockCarla SensSabrina KraftKatrin RauMichael D MilsomThomas GieseYvonne SamstagInaam A NakchbandiOsteoblasts lining the inner surface of bone support hematopoietic stem cell differentiation by virtue of proximity to the bone marrow. The osteoblasts also modify their own differentiation by producing various isoforms of fibronectin (FN). Despite evidence for immune regulation by osteoblasts, there is limited knowledge of how osteoblasts modulate cells of the immune system. Here, we show that extra domain A (EDA)-FN produced by osteoblasts increases arginase production in myeloid-derived cells, and we identify α5β1 as the mediating receptor. In different mouse models of cancer, osteoblasts or EDA-FN was found to up-regulate arginase-1 expression in myeloid-derived cells, resulting in increased cancer growth. This harmful effect can be reduced by interfering with the integrin α5β1 receptor or inhibiting arginase. Conversely, in tissue injury, the expression of arginase-1 is normally beneficial as it dampens the immune response to allow wound healing. We show that EDA-FN protects against excessive fibrotic tissue formation in a liver fibrosis model. Our results establish an immune regulatory function for EDA-FN originating from the osteoblasts and identify new avenues for enhancing the immune reaction against cancer.http://europepmc.org/articles/PMC5031442?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Stephanie Rossnagl
Eva Altrock
Carla Sens
Sabrina Kraft
Katrin Rau
Michael D Milsom
Thomas Giese
Yvonne Samstag
Inaam A Nakchbandi
spellingShingle Stephanie Rossnagl
Eva Altrock
Carla Sens
Sabrina Kraft
Katrin Rau
Michael D Milsom
Thomas Giese
Yvonne Samstag
Inaam A Nakchbandi
EDA-Fibronectin Originating from Osteoblasts Inhibits the Immune Response against Cancer.
PLoS Biology
author_facet Stephanie Rossnagl
Eva Altrock
Carla Sens
Sabrina Kraft
Katrin Rau
Michael D Milsom
Thomas Giese
Yvonne Samstag
Inaam A Nakchbandi
author_sort Stephanie Rossnagl
title EDA-Fibronectin Originating from Osteoblasts Inhibits the Immune Response against Cancer.
title_short EDA-Fibronectin Originating from Osteoblasts Inhibits the Immune Response against Cancer.
title_full EDA-Fibronectin Originating from Osteoblasts Inhibits the Immune Response against Cancer.
title_fullStr EDA-Fibronectin Originating from Osteoblasts Inhibits the Immune Response against Cancer.
title_full_unstemmed EDA-Fibronectin Originating from Osteoblasts Inhibits the Immune Response against Cancer.
title_sort eda-fibronectin originating from osteoblasts inhibits the immune response against cancer.
publisher Public Library of Science (PLoS)
series PLoS Biology
issn 1544-9173
1545-7885
publishDate 2016-09-01
description Osteoblasts lining the inner surface of bone support hematopoietic stem cell differentiation by virtue of proximity to the bone marrow. The osteoblasts also modify their own differentiation by producing various isoforms of fibronectin (FN). Despite evidence for immune regulation by osteoblasts, there is limited knowledge of how osteoblasts modulate cells of the immune system. Here, we show that extra domain A (EDA)-FN produced by osteoblasts increases arginase production in myeloid-derived cells, and we identify α5β1 as the mediating receptor. In different mouse models of cancer, osteoblasts or EDA-FN was found to up-regulate arginase-1 expression in myeloid-derived cells, resulting in increased cancer growth. This harmful effect can be reduced by interfering with the integrin α5β1 receptor or inhibiting arginase. Conversely, in tissue injury, the expression of arginase-1 is normally beneficial as it dampens the immune response to allow wound healing. We show that EDA-FN protects against excessive fibrotic tissue formation in a liver fibrosis model. Our results establish an immune regulatory function for EDA-FN originating from the osteoblasts and identify new avenues for enhancing the immune reaction against cancer.
url http://europepmc.org/articles/PMC5031442?pdf=render
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