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Integrated Single-Cell RNA-Sequencing Analysis of Aquaporin 5-Expressing Mouse Lung Epithelial Cells Identifies GPRC5A as a Novel Validated Type I Cell Surface Marker

Molecular and functional characterization of alveolar epithelial type I (AT1) cells has been challenging due to difficulty in isolating sufficient numbers of viable cells. Here we performed single-cell RNA-sequencing (scRNA-seq) of tdTomato(+) cells from lungs of AT1 cell-specific Aqp5-Cre-IRES-DsRe...

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Autores principales: Horie, Masafumi, Castaldi, Alessandra, Sunohara, Mitsuhiro, Wang, Hongjun, Ji, Yanbin, Liu, Yixin, Li, Fan, Wilkinson, Thomas A., Hung, Long, Shen, Hua, Kage, Hidenori, Offringa, Ite A., Marconett, Crystal N., Flodby, Per, Zhou, Beiyun, Borok, Zea
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7697677/
https://www.ncbi.nlm.nih.gov/pubmed/33187367
http://dx.doi.org/10.3390/cells9112460
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author Horie, Masafumi
Castaldi, Alessandra
Sunohara, Mitsuhiro
Wang, Hongjun
Ji, Yanbin
Liu, Yixin
Li, Fan
Wilkinson, Thomas A.
Hung, Long
Shen, Hua
Kage, Hidenori
Offringa, Ite A.
Marconett, Crystal N.
Flodby, Per
Zhou, Beiyun
Borok, Zea
author_facet Horie, Masafumi
Castaldi, Alessandra
Sunohara, Mitsuhiro
Wang, Hongjun
Ji, Yanbin
Liu, Yixin
Li, Fan
Wilkinson, Thomas A.
Hung, Long
Shen, Hua
Kage, Hidenori
Offringa, Ite A.
Marconett, Crystal N.
Flodby, Per
Zhou, Beiyun
Borok, Zea
author_sort Horie, Masafumi
collection PubMed
description Molecular and functional characterization of alveolar epithelial type I (AT1) cells has been challenging due to difficulty in isolating sufficient numbers of viable cells. Here we performed single-cell RNA-sequencing (scRNA-seq) of tdTomato(+) cells from lungs of AT1 cell-specific Aqp5-Cre-IRES-DsRed (ACID);R26tdTomato reporter mice. Following enzymatic digestion, CD31(-)CD45(-)E-cadherin(+)tdTomato(+) cells were subjected to fluorescence-activated cell sorting (FACS) followed by scRNA-seq. Cell identity was confirmed by immunofluorescence using cell type-specific antibodies. After quality control, 92 cells were analyzed. Most cells expressed ‘conventional’ AT1 cell markers (Aqp5, Pdpn, Hopx, Ager), with heterogeneous expression within this population. The remaining cells expressed AT2, club, basal or ciliated cell markers. Integration with public datasets identified three robust AT1 cell- and lung-enriched genes, Ager, Rtkn2 and Gprc5a, that were conserved across species. GPRC5A co-localized with HOPX and was not expressed in AT2 or airway cells in mouse, rat and human lung. GPRC5A co-localized with AQP5 but not pro-SPC or CC10 in mouse lung epithelial cell cytospins. We enriched mouse AT1 cells to perform molecular phenotyping using scRNA-seq. Further characterization of putative AT1 cell-enriched genes revealed GPRC5A as a conserved AT1 cell surface marker that may be useful for AT1 cell isolation.
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spelling pubmed-76976772020-11-29 Integrated Single-Cell RNA-Sequencing Analysis of Aquaporin 5-Expressing Mouse Lung Epithelial Cells Identifies GPRC5A as a Novel Validated Type I Cell Surface Marker Horie, Masafumi Castaldi, Alessandra Sunohara, Mitsuhiro Wang, Hongjun Ji, Yanbin Liu, Yixin Li, Fan Wilkinson, Thomas A. Hung, Long Shen, Hua Kage, Hidenori Offringa, Ite A. Marconett, Crystal N. Flodby, Per Zhou, Beiyun Borok, Zea Cells Article Molecular and functional characterization of alveolar epithelial type I (AT1) cells has been challenging due to difficulty in isolating sufficient numbers of viable cells. Here we performed single-cell RNA-sequencing (scRNA-seq) of tdTomato(+) cells from lungs of AT1 cell-specific Aqp5-Cre-IRES-DsRed (ACID);R26tdTomato reporter mice. Following enzymatic digestion, CD31(-)CD45(-)E-cadherin(+)tdTomato(+) cells were subjected to fluorescence-activated cell sorting (FACS) followed by scRNA-seq. Cell identity was confirmed by immunofluorescence using cell type-specific antibodies. After quality control, 92 cells were analyzed. Most cells expressed ‘conventional’ AT1 cell markers (Aqp5, Pdpn, Hopx, Ager), with heterogeneous expression within this population. The remaining cells expressed AT2, club, basal or ciliated cell markers. Integration with public datasets identified three robust AT1 cell- and lung-enriched genes, Ager, Rtkn2 and Gprc5a, that were conserved across species. GPRC5A co-localized with HOPX and was not expressed in AT2 or airway cells in mouse, rat and human lung. GPRC5A co-localized with AQP5 but not pro-SPC or CC10 in mouse lung epithelial cell cytospins. We enriched mouse AT1 cells to perform molecular phenotyping using scRNA-seq. Further characterization of putative AT1 cell-enriched genes revealed GPRC5A as a conserved AT1 cell surface marker that may be useful for AT1 cell isolation. MDPI 2020-11-11 /pmc/articles/PMC7697677/ /pubmed/33187367 http://dx.doi.org/10.3390/cells9112460 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Horie, Masafumi
Castaldi, Alessandra
Sunohara, Mitsuhiro
Wang, Hongjun
Ji, Yanbin
Liu, Yixin
Li, Fan
Wilkinson, Thomas A.
Hung, Long
Shen, Hua
Kage, Hidenori
Offringa, Ite A.
Marconett, Crystal N.
Flodby, Per
Zhou, Beiyun
Borok, Zea
Integrated Single-Cell RNA-Sequencing Analysis of Aquaporin 5-Expressing Mouse Lung Epithelial Cells Identifies GPRC5A as a Novel Validated Type I Cell Surface Marker
title Integrated Single-Cell RNA-Sequencing Analysis of Aquaporin 5-Expressing Mouse Lung Epithelial Cells Identifies GPRC5A as a Novel Validated Type I Cell Surface Marker
title_full Integrated Single-Cell RNA-Sequencing Analysis of Aquaporin 5-Expressing Mouse Lung Epithelial Cells Identifies GPRC5A as a Novel Validated Type I Cell Surface Marker
title_fullStr Integrated Single-Cell RNA-Sequencing Analysis of Aquaporin 5-Expressing Mouse Lung Epithelial Cells Identifies GPRC5A as a Novel Validated Type I Cell Surface Marker
title_full_unstemmed Integrated Single-Cell RNA-Sequencing Analysis of Aquaporin 5-Expressing Mouse Lung Epithelial Cells Identifies GPRC5A as a Novel Validated Type I Cell Surface Marker
title_short Integrated Single-Cell RNA-Sequencing Analysis of Aquaporin 5-Expressing Mouse Lung Epithelial Cells Identifies GPRC5A as a Novel Validated Type I Cell Surface Marker
title_sort integrated single-cell rna-sequencing analysis of aquaporin 5-expressing mouse lung epithelial cells identifies gprc5a as a novel validated type i cell surface marker
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7697677/
https://www.ncbi.nlm.nih.gov/pubmed/33187367
http://dx.doi.org/10.3390/cells9112460
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