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Calcium-activated chloride channel regulator 1 (CLCA1): More than a regulator of chloride transport and mucus production()

CLCA1 is a member of the CLCA (calcium-activated chloride channel regulator) family and plays an essential role in goblet cell mucus production from the respiratory tract epithelium. CLCA1 also regulates Ca(2+)-dependent Cl(−) transport that involves the channel protein transmembrane protein 16A (TM...

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Autores principales: Liu, Cong-Lin, Shi, Guo-Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: World Allergy Organization 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6909348/
https://www.ncbi.nlm.nih.gov/pubmed/31871532
http://dx.doi.org/10.1016/j.waojou.2019.100077
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author Liu, Cong-Lin
Shi, Guo-Ping
author_facet Liu, Cong-Lin
Shi, Guo-Ping
author_sort Liu, Cong-Lin
collection PubMed
description CLCA1 is a member of the CLCA (calcium-activated chloride channel regulator) family and plays an essential role in goblet cell mucus production from the respiratory tract epithelium. CLCA1 also regulates Ca(2+)-dependent Cl(−) transport that involves the channel protein transmembrane protein 16A (TMEM16A) and its accessary molecules. CLCA1 modulates epithelial cell chloride current and participates in the pathogenesis of mucus hypersecretory-associated respiratory and gastrointestinal diseases, including asthma, chronic obstructive pulmonary disease, cystic fibrosis, pneumonia, colon colitis, cystic fibrosis intestinal mucous disease, ulcerative colitis, and gastrointestinal parasitic infection. Most studies have been focused on the expression regulation of CLCA1 in human specimens. Limited studies used the CLCA1-deficient mice and CLCA1 blocking agents and yielded inconsistent conclusions regarding its role in these diseases. CLCA1 not only regulates mucin expression, but also participates in innate immune responses by binding to yet unidentified molecules on inflammatory cells for cytokine and chemokine production. CLCA1 also targets lymphatic endothelial cells and cancer cells by regulating lymphatic cell proliferation and lymphatic sinus growth in the lymphatic organs and controlling cancer cell differentiation, proliferation, and apoptosis, all which depend on the location of the lymphatic vessels, the type of cancers, the presence of Th2 cytokines, and possibly the availability and type of CLCA1-binding proteins. Here we summarize available studies related to these different activities of CLCA1 to assist our understanding of how this secreted modifier of calcium-activated chloride channels (CaCCs) affects mucus production and innate immunity during the pathogenesis of respiratory, gastrointestinal, and malignant diseases.
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spelling pubmed-69093482019-12-23 Calcium-activated chloride channel regulator 1 (CLCA1): More than a regulator of chloride transport and mucus production() Liu, Cong-Lin Shi, Guo-Ping World Allergy Organ J Article CLCA1 is a member of the CLCA (calcium-activated chloride channel regulator) family and plays an essential role in goblet cell mucus production from the respiratory tract epithelium. CLCA1 also regulates Ca(2+)-dependent Cl(−) transport that involves the channel protein transmembrane protein 16A (TMEM16A) and its accessary molecules. CLCA1 modulates epithelial cell chloride current and participates in the pathogenesis of mucus hypersecretory-associated respiratory and gastrointestinal diseases, including asthma, chronic obstructive pulmonary disease, cystic fibrosis, pneumonia, colon colitis, cystic fibrosis intestinal mucous disease, ulcerative colitis, and gastrointestinal parasitic infection. Most studies have been focused on the expression regulation of CLCA1 in human specimens. Limited studies used the CLCA1-deficient mice and CLCA1 blocking agents and yielded inconsistent conclusions regarding its role in these diseases. CLCA1 not only regulates mucin expression, but also participates in innate immune responses by binding to yet unidentified molecules on inflammatory cells for cytokine and chemokine production. CLCA1 also targets lymphatic endothelial cells and cancer cells by regulating lymphatic cell proliferation and lymphatic sinus growth in the lymphatic organs and controlling cancer cell differentiation, proliferation, and apoptosis, all which depend on the location of the lymphatic vessels, the type of cancers, the presence of Th2 cytokines, and possibly the availability and type of CLCA1-binding proteins. Here we summarize available studies related to these different activities of CLCA1 to assist our understanding of how this secreted modifier of calcium-activated chloride channels (CaCCs) affects mucus production and innate immunity during the pathogenesis of respiratory, gastrointestinal, and malignant diseases. World Allergy Organization 2019-11-29 /pmc/articles/PMC6909348/ /pubmed/31871532 http://dx.doi.org/10.1016/j.waojou.2019.100077 Text en © 2019 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Cong-Lin
Shi, Guo-Ping
Calcium-activated chloride channel regulator 1 (CLCA1): More than a regulator of chloride transport and mucus production()
title Calcium-activated chloride channel regulator 1 (CLCA1): More than a regulator of chloride transport and mucus production()
title_full Calcium-activated chloride channel regulator 1 (CLCA1): More than a regulator of chloride transport and mucus production()
title_fullStr Calcium-activated chloride channel regulator 1 (CLCA1): More than a regulator of chloride transport and mucus production()
title_full_unstemmed Calcium-activated chloride channel regulator 1 (CLCA1): More than a regulator of chloride transport and mucus production()
title_short Calcium-activated chloride channel regulator 1 (CLCA1): More than a regulator of chloride transport and mucus production()
title_sort calcium-activated chloride channel regulator 1 (clca1): more than a regulator of chloride transport and mucus production()
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6909348/
https://www.ncbi.nlm.nih.gov/pubmed/31871532
http://dx.doi.org/10.1016/j.waojou.2019.100077
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