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Interactions in CSF1-Driven Tenosynovial Giant Cell Tumors

PURPOSE: A major component of cells in tenosynovial giant cell tumor (TGCT) consists of bystander macrophages responding to CSF1 that is overproduced by a small number of neoplastic cells with a chromosomal translocation involving the CSF1 gene. An autocrine loop was postulated where the neoplastic...

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Autores principales: van IJzendoorn, David G.P., Matusiak, Magdalena, Charville, Gregory W., Spierenburg, Geert, Varma, Sushama, Colburg, Deana R.C., van de Sande, Michiel A.J., van Langevelde, Kirsten, Mohler, David G., Ganjoo, Kristen N., Bui, Nam Q., Avedian, Raffi S., Bovée, Judith V.M.G., Steffner, Robert, West, Robert B., van de Rijn, Matt
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9660542/
https://www.ncbi.nlm.nih.gov/pubmed/36007098
http://dx.doi.org/10.1158/1078-0432.CCR-22-1898
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author van IJzendoorn, David G.P.
Matusiak, Magdalena
Charville, Gregory W.
Spierenburg, Geert
Varma, Sushama
Colburg, Deana R.C.
van de Sande, Michiel A.J.
van Langevelde, Kirsten
Mohler, David G.
Ganjoo, Kristen N.
Bui, Nam Q.
Avedian, Raffi S.
Bovée, Judith V.M.G.
Steffner, Robert
West, Robert B.
van de Rijn, Matt
author_facet van IJzendoorn, David G.P.
Matusiak, Magdalena
Charville, Gregory W.
Spierenburg, Geert
Varma, Sushama
Colburg, Deana R.C.
van de Sande, Michiel A.J.
van Langevelde, Kirsten
Mohler, David G.
Ganjoo, Kristen N.
Bui, Nam Q.
Avedian, Raffi S.
Bovée, Judith V.M.G.
Steffner, Robert
West, Robert B.
van de Rijn, Matt
author_sort van IJzendoorn, David G.P.
collection PubMed
description PURPOSE: A major component of cells in tenosynovial giant cell tumor (TGCT) consists of bystander macrophages responding to CSF1 that is overproduced by a small number of neoplastic cells with a chromosomal translocation involving the CSF1 gene. An autocrine loop was postulated where the neoplastic cells would be stimulated through CSF1R expressed on their surface. Here, we use single-cell RNA sequencing (scRNA-seq) to investigate cellular interactions in TGCT. EXPERIMENTAL DESIGN: A total of 18,788 single cells from three TGCT and two giant cell tumor of bone (GCTB) samples underwent scRNA-seq. The three TGCTs were additionally analyzed using long-read RNA sequencing. Immunofluorescence and IHC for a range of markers were used to validate and extend the scRNA-seq findings. RESULTS: Two recurrent neoplastic cell populations were identified in TGCT that are highly similar to nonneoplastic synoviocytes. We identified GFPT2 as a marker that highlights the neoplastic cells in TCGT. We show that the neoplastic cells themselves do not express CSF1R. We identified overlapping MAB features between the giant cells in TGCT and GCTB. CONCLUSIONS: The neoplastic cells in TGCT are highly similar to nonneoplastic synoviocytes. The lack of CSF1R on the neoplastic cells indicates they may be unaffected by current therapies. High expression of GFPT2 in the neoplastic cells is associated with activation of the YAP1/TAZ pathway. In addition, we identified expression of the platelet-derived growth factor receptor in the neoplastic cells. These findings suggest two additional pathways to target in this tumor.
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spelling pubmed-96605422023-01-05 Interactions in CSF1-Driven Tenosynovial Giant Cell Tumors van IJzendoorn, David G.P. Matusiak, Magdalena Charville, Gregory W. Spierenburg, Geert Varma, Sushama Colburg, Deana R.C. van de Sande, Michiel A.J. van Langevelde, Kirsten Mohler, David G. Ganjoo, Kristen N. Bui, Nam Q. Avedian, Raffi S. Bovée, Judith V.M.G. Steffner, Robert West, Robert B. van de Rijn, Matt Clin Cancer Res Translational Cancer Mechanisms and Therapy PURPOSE: A major component of cells in tenosynovial giant cell tumor (TGCT) consists of bystander macrophages responding to CSF1 that is overproduced by a small number of neoplastic cells with a chromosomal translocation involving the CSF1 gene. An autocrine loop was postulated where the neoplastic cells would be stimulated through CSF1R expressed on their surface. Here, we use single-cell RNA sequencing (scRNA-seq) to investigate cellular interactions in TGCT. EXPERIMENTAL DESIGN: A total of 18,788 single cells from three TGCT and two giant cell tumor of bone (GCTB) samples underwent scRNA-seq. The three TGCTs were additionally analyzed using long-read RNA sequencing. Immunofluorescence and IHC for a range of markers were used to validate and extend the scRNA-seq findings. RESULTS: Two recurrent neoplastic cell populations were identified in TGCT that are highly similar to nonneoplastic synoviocytes. We identified GFPT2 as a marker that highlights the neoplastic cells in TCGT. We show that the neoplastic cells themselves do not express CSF1R. We identified overlapping MAB features between the giant cells in TGCT and GCTB. CONCLUSIONS: The neoplastic cells in TGCT are highly similar to nonneoplastic synoviocytes. The lack of CSF1R on the neoplastic cells indicates they may be unaffected by current therapies. High expression of GFPT2 in the neoplastic cells is associated with activation of the YAP1/TAZ pathway. In addition, we identified expression of the platelet-derived growth factor receptor in the neoplastic cells. These findings suggest two additional pathways to target in this tumor. American Association for Cancer Research 2022-11-14 2022-08-25 /pmc/articles/PMC9660542/ /pubmed/36007098 http://dx.doi.org/10.1158/1078-0432.CCR-22-1898 Text en ©2022 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Translational Cancer Mechanisms and Therapy
van IJzendoorn, David G.P.
Matusiak, Magdalena
Charville, Gregory W.
Spierenburg, Geert
Varma, Sushama
Colburg, Deana R.C.
van de Sande, Michiel A.J.
van Langevelde, Kirsten
Mohler, David G.
Ganjoo, Kristen N.
Bui, Nam Q.
Avedian, Raffi S.
Bovée, Judith V.M.G.
Steffner, Robert
West, Robert B.
van de Rijn, Matt
Interactions in CSF1-Driven Tenosynovial Giant Cell Tumors
title Interactions in CSF1-Driven Tenosynovial Giant Cell Tumors
title_full Interactions in CSF1-Driven Tenosynovial Giant Cell Tumors
title_fullStr Interactions in CSF1-Driven Tenosynovial Giant Cell Tumors
title_full_unstemmed Interactions in CSF1-Driven Tenosynovial Giant Cell Tumors
title_short Interactions in CSF1-Driven Tenosynovial Giant Cell Tumors
title_sort interactions in csf1-driven tenosynovial giant cell tumors
topic Translational Cancer Mechanisms and Therapy
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9660542/
https://www.ncbi.nlm.nih.gov/pubmed/36007098
http://dx.doi.org/10.1158/1078-0432.CCR-22-1898
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