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Targeted Disruption of MCPIP1/Zc3h12a Results in Fatal Inflammatory Disease

Previous studies using MCPIP1/Zc3h12a-deficient mice suggest that MCPIP1 is an important regulator of inflammation and immune homeostasis. However, the characterization of the immunological phenotype of MCPIP1-deficient mice has not been detailed. In this study, we performed evaluation through histo...

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Autores principales: Miao, Ruidong, Huang, Shengping, Zhou, Zhou, Quinn, Tim, Van Treek, Ben, Nayyar, Tehreem, Dim, Daniel, Jiang, Zhisheng, Papasian, Christopher J., Chen, Y. Eugene, Liu, Gang, Fu, Mingui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3932977/
https://www.ncbi.nlm.nih.gov/pubmed/23567898
http://dx.doi.org/10.1038/icb.2013.11
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author Miao, Ruidong
Huang, Shengping
Zhou, Zhou
Quinn, Tim
Van Treek, Ben
Nayyar, Tehreem
Dim, Daniel
Jiang, Zhisheng
Papasian, Christopher J.
Chen, Y. Eugene
Liu, Gang
Fu, Mingui
author_facet Miao, Ruidong
Huang, Shengping
Zhou, Zhou
Quinn, Tim
Van Treek, Ben
Nayyar, Tehreem
Dim, Daniel
Jiang, Zhisheng
Papasian, Christopher J.
Chen, Y. Eugene
Liu, Gang
Fu, Mingui
author_sort Miao, Ruidong
collection PubMed
description Previous studies using MCPIP1/Zc3h12a-deficient mice suggest that MCPIP1 is an important regulator of inflammation and immune homeostasis. However, the characterization of the immunological phenotype of MCPIP1-deficient mice has not been detailed. In this study, we performed evaluation through histological, flow cytometric, ELISA and real-time PCR analysis and found that targeted disruption of MCPIP1 gene leads to fatal, highly aggressive, and widespread immune-related lesions. In addition to previously observed growth retardation, splenomegaly, lymphoadenopathy, severe anemia and premature death, MCPIP1-deficient mice showed disorganization of lymphoid organs, including spleen, lymph nodes and thymus, and massive infiltration of lymphocytes, macrophages and neutrophils into many other non-lymphoid organs, primarily in lungs and liver. Flow cytometric analysis found significant increase in activated and differentiated T cells in peripheral blood and spleen of MCPIP1-deficient mice. Moreover, heightened production of inflammatory cytokines from activated macrophages and T cells were observed in MCPIP1-deficient mice. Interestingly, treatment of MCPIP1-deficient mice with antibiotics resulted in significant improvement of life-span and a decrease in inflammatory syndrome. Taken together, these results suggest a prominent role for MCPIP1 in the control of inflammation and immune homeostasis.
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spelling pubmed-39329772014-02-24 Targeted Disruption of MCPIP1/Zc3h12a Results in Fatal Inflammatory Disease Miao, Ruidong Huang, Shengping Zhou, Zhou Quinn, Tim Van Treek, Ben Nayyar, Tehreem Dim, Daniel Jiang, Zhisheng Papasian, Christopher J. Chen, Y. Eugene Liu, Gang Fu, Mingui Immunol Cell Biol Article Previous studies using MCPIP1/Zc3h12a-deficient mice suggest that MCPIP1 is an important regulator of inflammation and immune homeostasis. However, the characterization of the immunological phenotype of MCPIP1-deficient mice has not been detailed. In this study, we performed evaluation through histological, flow cytometric, ELISA and real-time PCR analysis and found that targeted disruption of MCPIP1 gene leads to fatal, highly aggressive, and widespread immune-related lesions. In addition to previously observed growth retardation, splenomegaly, lymphoadenopathy, severe anemia and premature death, MCPIP1-deficient mice showed disorganization of lymphoid organs, including spleen, lymph nodes and thymus, and massive infiltration of lymphocytes, macrophages and neutrophils into many other non-lymphoid organs, primarily in lungs and liver. Flow cytometric analysis found significant increase in activated and differentiated T cells in peripheral blood and spleen of MCPIP1-deficient mice. Moreover, heightened production of inflammatory cytokines from activated macrophages and T cells were observed in MCPIP1-deficient mice. Interestingly, treatment of MCPIP1-deficient mice with antibiotics resulted in significant improvement of life-span and a decrease in inflammatory syndrome. Taken together, these results suggest a prominent role for MCPIP1 in the control of inflammation and immune homeostasis. 2013-04-09 2013-05 /pmc/articles/PMC3932977/ /pubmed/23567898 http://dx.doi.org/10.1038/icb.2013.11 Text en Users may view, print, copy, download and 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
Miao, Ruidong
Huang, Shengping
Zhou, Zhou
Quinn, Tim
Van Treek, Ben
Nayyar, Tehreem
Dim, Daniel
Jiang, Zhisheng
Papasian, Christopher J.
Chen, Y. Eugene
Liu, Gang
Fu, Mingui
Targeted Disruption of MCPIP1/Zc3h12a Results in Fatal Inflammatory Disease
title Targeted Disruption of MCPIP1/Zc3h12a Results in Fatal Inflammatory Disease
title_full Targeted Disruption of MCPIP1/Zc3h12a Results in Fatal Inflammatory Disease
title_fullStr Targeted Disruption of MCPIP1/Zc3h12a Results in Fatal Inflammatory Disease
title_full_unstemmed Targeted Disruption of MCPIP1/Zc3h12a Results in Fatal Inflammatory Disease
title_short Targeted Disruption of MCPIP1/Zc3h12a Results in Fatal Inflammatory Disease
title_sort targeted disruption of mcpip1/zc3h12a results in fatal inflammatory disease
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3932977/
https://www.ncbi.nlm.nih.gov/pubmed/23567898
http://dx.doi.org/10.1038/icb.2013.11
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