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Phospholipid scramblase-1 regulates innate type 2 inflammation in mouse lungs via CRTH2-dependent mechanisms

Exaggerated Type 2 immune responses play critical roles in the pathogenesis of a variety of diseases including asthma, allergy, and pulmonary fibrosis. Recent studies have highlighted the importance of innate type 2 immune responses and innate lymphoid 2 cells (ILC2s) in these disorders. However, th...

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Autores principales: Hernandez-Gutierrez, Ashley, Majid, Sonoor, Eberle, Adam, Choi, Ashley, Sorkhdini, Parand, Yang, Dongqin, Yang, Alina Xiaoyu, Norbrun, Carmelissa, He, Chuan Hua, Lee, Chang-min, Lee, Chun Geun, Elias, Jack A., Zhou, Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10378191/
https://www.ncbi.nlm.nih.gov/pubmed/37289545
http://dx.doi.org/10.1172/JCI169583
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author Hernandez-Gutierrez, Ashley
Majid, Sonoor
Eberle, Adam
Choi, Ashley
Sorkhdini, Parand
Yang, Dongqin
Yang, Alina Xiaoyu
Norbrun, Carmelissa
He, Chuan Hua
Lee, Chang-min
Lee, Chun Geun
Elias, Jack A.
Zhou, Yang
author_facet Hernandez-Gutierrez, Ashley
Majid, Sonoor
Eberle, Adam
Choi, Ashley
Sorkhdini, Parand
Yang, Dongqin
Yang, Alina Xiaoyu
Norbrun, Carmelissa
He, Chuan Hua
Lee, Chang-min
Lee, Chun Geun
Elias, Jack A.
Zhou, Yang
author_sort Hernandez-Gutierrez, Ashley
collection PubMed
description Exaggerated Type 2 immune responses play critical roles in the pathogenesis of a variety of diseases including asthma, allergy, and pulmonary fibrosis. Recent studies have highlighted the importance of innate type 2 immune responses and innate lymphoid 2 cells (ILC2s) in these disorders. However, the mechanisms that control the development of pulmonary innate type 2 responses (IT2IR) and the recruitment and/or activation of ILC2 cells are poorly understood. In mouse models of pulmonary IT2IR, we demonstrated that phospholipid scramblase-1 (PLSCR1), a type II transmembrane protein that mediates bidirectional and nonspecific translocation of phospholipids between the inner and outer leaflets of the plasma membrane, was a critical regulator of IT2IR in the lung. We further suggested that (a) PLSCR1 bound to and physically interacted with chemoattractant receptor-homologous molecule(CRTH2), which is a G-protein-coupled receptor that is expressed on TH2 cells and on multiple immune cells and is commonly used to identify ILC2 cells, and (b) the effects of PLSCR1 on ILC2 activation and IT2IR were mediated via CRTH2-dependent mechanisms. Overall, our studies demonstrated that PLSCR1 played an essential role in the pathogenesis of ILC2 responses, providing critical insights into biology and disease pathogenesis and identifying targets that can be manipulated in attempts to control IT2IR in chronic diseases such as asthma.
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spelling pubmed-103781912023-08-01 Phospholipid scramblase-1 regulates innate type 2 inflammation in mouse lungs via CRTH2-dependent mechanisms Hernandez-Gutierrez, Ashley Majid, Sonoor Eberle, Adam Choi, Ashley Sorkhdini, Parand Yang, Dongqin Yang, Alina Xiaoyu Norbrun, Carmelissa He, Chuan Hua Lee, Chang-min Lee, Chun Geun Elias, Jack A. Zhou, Yang J Clin Invest Research Article Exaggerated Type 2 immune responses play critical roles in the pathogenesis of a variety of diseases including asthma, allergy, and pulmonary fibrosis. Recent studies have highlighted the importance of innate type 2 immune responses and innate lymphoid 2 cells (ILC2s) in these disorders. However, the mechanisms that control the development of pulmonary innate type 2 responses (IT2IR) and the recruitment and/or activation of ILC2 cells are poorly understood. In mouse models of pulmonary IT2IR, we demonstrated that phospholipid scramblase-1 (PLSCR1), a type II transmembrane protein that mediates bidirectional and nonspecific translocation of phospholipids between the inner and outer leaflets of the plasma membrane, was a critical regulator of IT2IR in the lung. We further suggested that (a) PLSCR1 bound to and physically interacted with chemoattractant receptor-homologous molecule(CRTH2), which is a G-protein-coupled receptor that is expressed on TH2 cells and on multiple immune cells and is commonly used to identify ILC2 cells, and (b) the effects of PLSCR1 on ILC2 activation and IT2IR were mediated via CRTH2-dependent mechanisms. Overall, our studies demonstrated that PLSCR1 played an essential role in the pathogenesis of ILC2 responses, providing critical insights into biology and disease pathogenesis and identifying targets that can be manipulated in attempts to control IT2IR in chronic diseases such as asthma. American Society for Clinical Investigation 2023-08-01 /pmc/articles/PMC10378191/ /pubmed/37289545 http://dx.doi.org/10.1172/JCI169583 Text en © 2023 Hernandez-Gutierrez et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Hernandez-Gutierrez, Ashley
Majid, Sonoor
Eberle, Adam
Choi, Ashley
Sorkhdini, Parand
Yang, Dongqin
Yang, Alina Xiaoyu
Norbrun, Carmelissa
He, Chuan Hua
Lee, Chang-min
Lee, Chun Geun
Elias, Jack A.
Zhou, Yang
Phospholipid scramblase-1 regulates innate type 2 inflammation in mouse lungs via CRTH2-dependent mechanisms
title Phospholipid scramblase-1 regulates innate type 2 inflammation in mouse lungs via CRTH2-dependent mechanisms
title_full Phospholipid scramblase-1 regulates innate type 2 inflammation in mouse lungs via CRTH2-dependent mechanisms
title_fullStr Phospholipid scramblase-1 regulates innate type 2 inflammation in mouse lungs via CRTH2-dependent mechanisms
title_full_unstemmed Phospholipid scramblase-1 regulates innate type 2 inflammation in mouse lungs via CRTH2-dependent mechanisms
title_short Phospholipid scramblase-1 regulates innate type 2 inflammation in mouse lungs via CRTH2-dependent mechanisms
title_sort phospholipid scramblase-1 regulates innate type 2 inflammation in mouse lungs via crth2-dependent mechanisms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10378191/
https://www.ncbi.nlm.nih.gov/pubmed/37289545
http://dx.doi.org/10.1172/JCI169583
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