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Series GSE155364 Query DataSets for GSE155364
Status Public on Oct 15, 2020
Title A Wnt-induced phenotypic switch in cancer-associated fibroblasts inhibits EMT in colorectal cancer
Organisms Homo sapiens; Mus musculus
Experiment type Expression profiling by high throughput sequencing
Summary Tumor progression is recognized as a result of an evolving crosstalk between tumor cells and their surrounding non-transformed stroma. Although Wnt signaling has been intensively studied in colorectal cancer (CRC), it remains unclear whether activity in the tumor-associated stroma contributes to malignancy. To specifically interfere with stromal signals, we generated Wnt-independent tumor organoids that secrete the Wnt antagonist Sfrp1. Upon subcutaneous transplantation into immuno-competent as well as -deficient mice, we observed strong reduction of tumor growth. Histological and transcriptomic analyses revealed that Sfrp1 induces an EMT (epithelial-mesenchymal transition) phenotype in tumor cells without affecting tumor-intrinsic Wnt signaling, suggesting involvement of non-immune stromal cells. Indeed, blockage of canonical signaling using Sfrp1, Dkk1, or fibroblast-specific genetic ablation of β-catenin strongly decreased the number of cancer-associated myofibroblasts (myCAFs). Interestingly, we found that the Wnt activity in CAFs is linked with distinct subtypes, where low and high levels induce an inflammatory-like CAF (iCAF) subtype or contractile myCAFs, respectively. Co-culture of tumor organoids with iCAFs resulted in massive upregulation of EMT markers, while myCAFs reverted this phenotype. In summary, we show that tumor growth and malignancy are differentially regulated via district fibroblast subtypes under the influence of juxtacrine Wnt signals.
 
Overall design Generation of Wnt-independent mouse tumor organoids that overexpress the Wnt antagonist Sfrp1 to block stromal Wnt signals and study the consequences on tumor growth and progression. Generated tumor lines were sequenced in vitro and upon sorting of Epcam+ and Pdgfrα+ cells from subcutaneous tumors. Stromal consequences were also studied of human xenografts after Sfrp1 overexpression. Moreover, mouse fibroblasts were cultured in the presence and absence of Wnt stimulation for validation.
Web link https://cancerres.aacrjournals.org/content/early/2020/10/14/0008-5472.CAN-20-0263
 
Contributor(s) Mosa MH, Michels BE, Menche C, Nicolas AM, Darvishi T, Greten FR, Farin HF
Citation(s) 33055221
Submission date Jul 29, 2020
Last update date Jan 18, 2021
Contact name Mohammed Hossameldin Mosa
Organization name Frankfurt Cancer Institute/Georg-Speyer-Haus
Lab Human Organoids Biobank
Street address Paul-Ehrlich Str. 42-44
City Frankfurt am Main
State/province Hessen
ZIP/Postal code 60596
Country Germany
 
Platforms (2)
GPL13112 Illumina HiSeq 2000 (Mus musculus)
GPL16512 Illumina HiSeq 2000 (Homo sapiens; Mus musculus)
Samples (30)
GSM4700149 APN-control_invitro_1
GSM4700150 APN-control_invitro_2
GSM4700151 APN-control_invitro_3
Relations
BioProject PRJNA649526
SRA SRP274130

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Supplementary file Size Download File type/resource
GSE155364_20200715_Sfrp1_fibroblasts_invitro_invivo.txt.gz 2.4 Mb (ftp)(http) TXT
GSE155364_20200715_Sfrp1_tumor_cells_invitro_invivo.txt.gz 2.9 Mb (ftp)(http) TXT
GSE155364_20200715_humanXeno_stroma_only_Sfrp1.txt.gz 723.1 Kb (ftp)(http) TXT
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