TBX2-positive cells represent a multi-potent mesenchymal progenitor pool in the developing lung

Abstract Background In the embryonic mammalian lung, mesenchymal cells act both as a signaling center for epithelial proliferation, differentiation and morphogenesis as well as a source for a multitude of differentiated cell types that support the structure of the developing and mature organ. Whethe...

Full description

Bibliographic Details
Main Authors: Irina Wojahn, Timo H. Lüdtke, Vincent M. Christoffels, Mark-Oliver Trowe, Andreas Kispert
Format: Article
Language:English
Published: BMC 2019-12-01
Series:Respiratory Research
Subjects:
Online Access:https://doi.org/10.1186/s12931-019-1264-y
id doaj-66de7a3310f448df8c3e7dcc4267408a
record_format Article
spelling doaj-66de7a3310f448df8c3e7dcc4267408a2020-12-27T12:06:27ZengBMCRespiratory Research1465-993X2019-12-0120111410.1186/s12931-019-1264-yTBX2-positive cells represent a multi-potent mesenchymal progenitor pool in the developing lungIrina Wojahn0Timo H. Lüdtke1Vincent M. Christoffels2Mark-Oliver Trowe3Andreas Kispert4Institut für Molekularbiologie, Medizinische Hochschule HannoverInstitut für Molekularbiologie, Medizinische Hochschule HannoverDepartment of Anatomy, Embryology and Physiology, Academic Medical Center, University of AmsterdamInstitut für Molekularbiologie, Medizinische Hochschule HannoverInstitut für Molekularbiologie, Medizinische Hochschule HannoverAbstract Background In the embryonic mammalian lung, mesenchymal cells act both as a signaling center for epithelial proliferation, differentiation and morphogenesis as well as a source for a multitude of differentiated cell types that support the structure of the developing and mature organ. Whether the embryonic pulmonary mesenchyme is a homogenous precursor pool and how it diversifies into different cell lineages is poorly understood. We have previously shown that the T-box transcription factor gene Tbx2 is expressed in the pulmonary mesenchyme of the developing murine lung and is required therein to maintain branching morphogenesis. Methods We determined Tbx2/TBX2 expression in the developing murine lung by in situ hybridization and immunofluorescence analyses. We used a genetic lineage tracing approach with a Cre line under the control of endogenous Tbx2 control elements (Tbx2 cre ), and the R26 mTmG reporter line to trace TBX2-positive cells in the murine lung. We determined the fate of the TBX2 lineage by co-immunofluorescence analysis of the GFP reporter and differentiation markers in normal murine lungs and in lungs lacking or overexpressing TBX2 in the pulmonary mesenchyme. Results We show that TBX2 is strongly expressed in mesenchymal progenitors in the developing murine lung. In differentiated smooth muscle cells and in fibroblasts, expression of TBX2 is still widespread but strongly reduced. In mesothelial and endothelial cells expression is more variable and scattered. All fetal smooth muscle cells, endothelial cells and fibroblasts derive from TBX2+ progenitors, whereas half of the mesothelial cells have a different descent. The fate of TBX2-expressing cells is not changed in Tbx2-deficient and in TBX2-constitutively overexpressing mice but the distribution and abundance of endothelial and smooth muscle cells is changed in the overexpression condition. Conclusion The fate of pulmonary mesenchymal progenitors is largely independent of TBX2. Nevertheless, a successive and precisely timed downregulation of TBX2 is necessary to allow proper differentiation and functionality of bronchial smooth muscle cells and to limit endothelial differentiation. Our work suggests expression of TBX2 in an early pulmonary mesenchymal progenitor and supports a role of TBX2 in maintaining the precursor state of these cells.https://doi.org/10.1186/s12931-019-1264-yTbx2Lineage tracingPulmonary mesenchymeSmooth muscle cellsLung development
collection DOAJ
language English
format Article
sources DOAJ
author Irina Wojahn
Timo H. Lüdtke
Vincent M. Christoffels
Mark-Oliver Trowe
Andreas Kispert
spellingShingle Irina Wojahn
Timo H. Lüdtke
Vincent M. Christoffels
Mark-Oliver Trowe
Andreas Kispert
TBX2-positive cells represent a multi-potent mesenchymal progenitor pool in the developing lung
Respiratory Research
Tbx2
Lineage tracing
Pulmonary mesenchyme
Smooth muscle cells
Lung development
author_facet Irina Wojahn
Timo H. Lüdtke
Vincent M. Christoffels
Mark-Oliver Trowe
Andreas Kispert
author_sort Irina Wojahn
title TBX2-positive cells represent a multi-potent mesenchymal progenitor pool in the developing lung
title_short TBX2-positive cells represent a multi-potent mesenchymal progenitor pool in the developing lung
title_full TBX2-positive cells represent a multi-potent mesenchymal progenitor pool in the developing lung
title_fullStr TBX2-positive cells represent a multi-potent mesenchymal progenitor pool in the developing lung
title_full_unstemmed TBX2-positive cells represent a multi-potent mesenchymal progenitor pool in the developing lung
title_sort tbx2-positive cells represent a multi-potent mesenchymal progenitor pool in the developing lung
publisher BMC
series Respiratory Research
issn 1465-993X
publishDate 2019-12-01
description Abstract Background In the embryonic mammalian lung, mesenchymal cells act both as a signaling center for epithelial proliferation, differentiation and morphogenesis as well as a source for a multitude of differentiated cell types that support the structure of the developing and mature organ. Whether the embryonic pulmonary mesenchyme is a homogenous precursor pool and how it diversifies into different cell lineages is poorly understood. We have previously shown that the T-box transcription factor gene Tbx2 is expressed in the pulmonary mesenchyme of the developing murine lung and is required therein to maintain branching morphogenesis. Methods We determined Tbx2/TBX2 expression in the developing murine lung by in situ hybridization and immunofluorescence analyses. We used a genetic lineage tracing approach with a Cre line under the control of endogenous Tbx2 control elements (Tbx2 cre ), and the R26 mTmG reporter line to trace TBX2-positive cells in the murine lung. We determined the fate of the TBX2 lineage by co-immunofluorescence analysis of the GFP reporter and differentiation markers in normal murine lungs and in lungs lacking or overexpressing TBX2 in the pulmonary mesenchyme. Results We show that TBX2 is strongly expressed in mesenchymal progenitors in the developing murine lung. In differentiated smooth muscle cells and in fibroblasts, expression of TBX2 is still widespread but strongly reduced. In mesothelial and endothelial cells expression is more variable and scattered. All fetal smooth muscle cells, endothelial cells and fibroblasts derive from TBX2+ progenitors, whereas half of the mesothelial cells have a different descent. The fate of TBX2-expressing cells is not changed in Tbx2-deficient and in TBX2-constitutively overexpressing mice but the distribution and abundance of endothelial and smooth muscle cells is changed in the overexpression condition. Conclusion The fate of pulmonary mesenchymal progenitors is largely independent of TBX2. Nevertheless, a successive and precisely timed downregulation of TBX2 is necessary to allow proper differentiation and functionality of bronchial smooth muscle cells and to limit endothelial differentiation. Our work suggests expression of TBX2 in an early pulmonary mesenchymal progenitor and supports a role of TBX2 in maintaining the precursor state of these cells.
topic Tbx2
Lineage tracing
Pulmonary mesenchyme
Smooth muscle cells
Lung development
url https://doi.org/10.1186/s12931-019-1264-y
work_keys_str_mv AT irinawojahn tbx2positivecellsrepresentamultipotentmesenchymalprogenitorpoolinthedevelopinglung
AT timohludtke tbx2positivecellsrepresentamultipotentmesenchymalprogenitorpoolinthedevelopinglung
AT vincentmchristoffels tbx2positivecellsrepresentamultipotentmesenchymalprogenitorpoolinthedevelopinglung
AT markolivertrowe tbx2positivecellsrepresentamultipotentmesenchymalprogenitorpoolinthedevelopinglung
AT andreaskispert tbx2positivecellsrepresentamultipotentmesenchymalprogenitorpoolinthedevelopinglung
_version_ 1724369390160314368