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MRP14 enhances the ability of macrophage to recruit T cells and promotes obesity-induced insulin resistance

OBJECTIVE: Myeloid-related protein-14 (MRP14) and its binding partner MRP8 play an essential role in innate immune function and have been implicated in a variety of inflammatory diseases. However, the role of MRP14 in obesity-induced inflammation and insulin resistance is not well defined. This stud...

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Autores principales: Xia, Chang, Razavi, Michael, Rao, Xiaoquan, Braunstein, Zachary, Mao, Hong, Toomey, Amelia C., Wang, Yunmei, Simon, Daniel I., Zhao, Shi, Rajagopalan, Sanjay, Zhong, Jixin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6821582/
https://www.ncbi.nlm.nih.gov/pubmed/31040394
http://dx.doi.org/10.1038/s41366-019-0366-4
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author Xia, Chang
Razavi, Michael
Rao, Xiaoquan
Braunstein, Zachary
Mao, Hong
Toomey, Amelia C.
Wang, Yunmei
Simon, Daniel I.
Zhao, Shi
Rajagopalan, Sanjay
Zhong, Jixin
author_facet Xia, Chang
Razavi, Michael
Rao, Xiaoquan
Braunstein, Zachary
Mao, Hong
Toomey, Amelia C.
Wang, Yunmei
Simon, Daniel I.
Zhao, Shi
Rajagopalan, Sanjay
Zhong, Jixin
author_sort Xia, Chang
collection PubMed
description OBJECTIVE: Myeloid-related protein-14 (MRP14) and its binding partner MRP8 play an essential role in innate immune function and have been implicated in a variety of inflammatory diseases. However, the role of MRP14 in obesity-induced inflammation and insulin resistance is not well defined. This study investigated the role of MRP14 in macrophage-mediated adipose tissue inflammation and obesity-induced insulin resistance. SUBJECTS AND RESULTS: Wild-type (WT) and Mrp14(−/−) mice were fed a high-fat diet or normal chow for 12 weeks. Tissue-resident macrophages in both adipose tissue and liver from obese WT mice expressed higher levels of MRP14 in the visceral adipose fat and liver compared to the lean mice. Mrp14(−/−) mice demonstrated a significantly improved post-prandial insulin sensitivity, as measured by intraperitoneal glucose tolerance test and insulin tolerance testing. Macrophages secreted MRP14 in response to inflammatory stimuli such as LPS. Extracellular MRP8/14 induced the production of CCL5 and CXCL9. Deficiency of MRP14 did not affect macrophage proliferation, mitochondrial respiration, and glycolytic function, but Mrp14(−/−) macrophages showed a reduced ability to attract T cells. Depletion of the extracellular MRP14 reduced the T cell attracting ability of WT macrophages to a level similar to Mrp14(−/−) macrophages. CONCLUSION: Our data indicates that MRP14 deficiency decreases obesity-induced insulin resistance and MRP8/14 regulates T cell recruitment through the induction of T cell chemoattractant production from macrophages.
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spelling pubmed-68215822019-12-07 MRP14 enhances the ability of macrophage to recruit T cells and promotes obesity-induced insulin resistance Xia, Chang Razavi, Michael Rao, Xiaoquan Braunstein, Zachary Mao, Hong Toomey, Amelia C. Wang, Yunmei Simon, Daniel I. Zhao, Shi Rajagopalan, Sanjay Zhong, Jixin Int J Obes (Lond) Article OBJECTIVE: Myeloid-related protein-14 (MRP14) and its binding partner MRP8 play an essential role in innate immune function and have been implicated in a variety of inflammatory diseases. However, the role of MRP14 in obesity-induced inflammation and insulin resistance is not well defined. This study investigated the role of MRP14 in macrophage-mediated adipose tissue inflammation and obesity-induced insulin resistance. SUBJECTS AND RESULTS: Wild-type (WT) and Mrp14(−/−) mice were fed a high-fat diet or normal chow for 12 weeks. Tissue-resident macrophages in both adipose tissue and liver from obese WT mice expressed higher levels of MRP14 in the visceral adipose fat and liver compared to the lean mice. Mrp14(−/−) mice demonstrated a significantly improved post-prandial insulin sensitivity, as measured by intraperitoneal glucose tolerance test and insulin tolerance testing. Macrophages secreted MRP14 in response to inflammatory stimuli such as LPS. Extracellular MRP8/14 induced the production of CCL5 and CXCL9. Deficiency of MRP14 did not affect macrophage proliferation, mitochondrial respiration, and glycolytic function, but Mrp14(−/−) macrophages showed a reduced ability to attract T cells. Depletion of the extracellular MRP14 reduced the T cell attracting ability of WT macrophages to a level similar to Mrp14(−/−) macrophages. CONCLUSION: Our data indicates that MRP14 deficiency decreases obesity-induced insulin resistance and MRP8/14 regulates T cell recruitment through the induction of T cell chemoattractant production from macrophages. 2019-04-30 2019-12 /pmc/articles/PMC6821582/ /pubmed/31040394 http://dx.doi.org/10.1038/s41366-019-0366-4 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Xia, Chang
Razavi, Michael
Rao, Xiaoquan
Braunstein, Zachary
Mao, Hong
Toomey, Amelia C.
Wang, Yunmei
Simon, Daniel I.
Zhao, Shi
Rajagopalan, Sanjay
Zhong, Jixin
MRP14 enhances the ability of macrophage to recruit T cells and promotes obesity-induced insulin resistance
title MRP14 enhances the ability of macrophage to recruit T cells and promotes obesity-induced insulin resistance
title_full MRP14 enhances the ability of macrophage to recruit T cells and promotes obesity-induced insulin resistance
title_fullStr MRP14 enhances the ability of macrophage to recruit T cells and promotes obesity-induced insulin resistance
title_full_unstemmed MRP14 enhances the ability of macrophage to recruit T cells and promotes obesity-induced insulin resistance
title_short MRP14 enhances the ability of macrophage to recruit T cells and promotes obesity-induced insulin resistance
title_sort mrp14 enhances the ability of macrophage to recruit t cells and promotes obesity-induced insulin resistance
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6821582/
https://www.ncbi.nlm.nih.gov/pubmed/31040394
http://dx.doi.org/10.1038/s41366-019-0366-4
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