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Series GSE153646 Query DataSets for GSE153646
Status Public on Sep 30, 2020
Title Fibroblasts direct differentiation of human breast epithelial progenitors
Organism Homo sapiens
Experiment type Expression profiling by high throughput sequencing
Summary Background: Breast cancer arises within specific regions in the human breast referred to as the terminal duct lobular units (TDLUs). These are relatively dynamic structures characterized by sex hormone driven cyclic epithelial turnover. TDLUs consist of unique parenchymal entities embedded within a fibroblast-rich lobular stroma. Here, we established and characterized a new human breast lobular fibroblast cell line against its interlobular counterpart with a view to assessing the role of region-specific stromal cues in the control of TDLU dynamics.
Methods: Primary lobular and interlobular fibroblasts were transduced to express human telomerase reverse transcriptase (hTERT). Differentiation of the established cell lines along lobular and interlobular pathways was determined by immunocytochemical staining and genome-wide RNA sequencing. Their functional properties were further characterized by analysis of mesenchymal stem cell (MSC) differentiation repertoire in culture and in vivo. The cells’ physiological relevance for parenchymal differentiation was examined in heterotypic co-culture with fluorescence-activated cell sorting (FACS)-purified normal breast primary luminal or myoepithelial progenitors. The co-cultures were immunostained for quantitative assessment of epithelial branching morphogenesis, polarization, growth, and luminal epithelial maturation. In extension, myoepithelial progenitors were tested for luminal differentiation capacity in culture and in mouse xenografts. To unravel the significance of transforming growth factor-beta (TGF-β)-mediated crosstalk in TDLU-like morphogenesis and differentiation, fibroblasts were incubated with the TGF-β signaling inhibitor, SB431542, prior to heterotypic co-culture with luminal cells.
Results: hTERT immortalized fibroblast cell lines retained critical phenotypic traits in culture and linked to primary fibroblasts. Cell culture assays and transplantation to mice showed that the origin of fibroblasts determines TDLU-like and ductal-like differentiation of epithelial progenitors. Whereas lobular fibroblasts supported a high level of branching morphogenesis by luminal cells, interlobular fibroblasts supported ductal-like myoepithelial characteristics. TDLU-like morphogenesis, at least in part, relied on intact TGF-β signaling.
Conclusions: The significance of the most prominent cell type in normal breast stroma, the fibroblast, in directing epithelial differentiation is largely unknown. Through establishment of lobular and interlobular fibroblast cell lines, we here demonstrate that epithelial progenitors are submitted to stromal cues for site-specific differentiation. Our findings lend credence to considering stromal subtleties of crucial importance in the development of normal breast and, in turn, breast cancer.
 
Overall design Duplicate primary lobular and interlobular breast fibroblastic cells. Duplicate immortalized lobular and interlobular breast fibroblastic cells.
Web link https://doi.org/10.1186/s13058-020-01344-0
 
Contributor(s) Morsing M, Kim J, Villadsen R, Goldhammer N, Jafari A, Kassem M, Petersen OW, Rønnov-Jessen L
Citation(s) 32993755, 38229104
Submission date Jul 01, 2020
Last update date Jan 29, 2024
Contact name Mikkel Morsing
Organization name University of Copenhagen
Department Department of Cellular and Molecular Medicine and Danish Stem Cell Center
Lab Moustapha Kassem, Ole William Petersen
Street address Blegdamsvej 3b
City Copenhagen
State/province Nørrebro
ZIP/Postal code 2200
Country Denmark
 
Platforms (1)
GPL23227 BGISEQ-500 (Homo sapiens)
Samples (8)
GSM4648584 Primary lobular cells_1
GSM4648585 Primary lobular cells_2
GSM4648586 Primary interlobular cells_1
Relations
BioProject PRJNA643540
SRA SRP269579

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Supplementary file Size Download File type/resource
GSE153646_AllSamples.GeneExpression.FPKM.xls.xlsx 3.5 Mb (ftp)(http) XLSX
GSE153646_Interlobular_hTERT-VS-lobular_hTERT.DEseq2_Method.GeneDiffExp.xlsx 3.8 Mb (ftp)(http) XLSX
GSE153646_Primary_interlobular-VS-primary_lobular.DEseq2_Method.GeneDiffExp.xlsx 3.9 Mb (ftp)(http) XLSX
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