Cargando…

Adipocyte-like signature in ovarian cancer minimal residual disease identifies metabolic vulnerabilities of tumor-initiating cells

Similar to tumor-initiating cells (TICs), minimal residual disease (MRD) is capable of reinitiating tumors and causing recurrence. However, the molecular characteristics of solid tumor MRD cells and drivers of their survival have remained elusive. Here we performed dense multiregion transcriptomics...

Descripción completa

Detalles Bibliográficos
Autores principales: Artibani, Mara, Masuda, Kenta, Hu, Zhiyuan, Rauher, Pascal C., Mallett, Garry, Wietek, Nina, Morotti, Matteo, Chong, Kay, KaramiNejadRanjbar, Mohammad, Zois, Christos E., Dhar, Sunanda, El-Sahhar, Salma, Campo, Leticia, Blagden, Sarah P., Damato, Stephen, Pathiraja, Pubudu N., Nicum, Shibani, Gleeson, Fergus, Laios, Alexandros, Alsaadi, Abdulkhaliq, Santana Gonzalez, Laura, Motohara, Takeshi, Albukhari, Ashwag, Lu, Zhen, Bast, Robert C., Harris, Adrian L., Ejsing, Christer S., Klemm, Robin W., Yau, Christopher, Sauka-Spengler, Tatjana, Ahmed, Ahmed Ashour
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8262282/
https://www.ncbi.nlm.nih.gov/pubmed/33945502
http://dx.doi.org/10.1172/jci.insight.147929
_version_ 1783719160849629184
author Artibani, Mara
Masuda, Kenta
Hu, Zhiyuan
Rauher, Pascal C.
Mallett, Garry
Wietek, Nina
Morotti, Matteo
Chong, Kay
KaramiNejadRanjbar, Mohammad
Zois, Christos E.
Dhar, Sunanda
El-Sahhar, Salma
Campo, Leticia
Blagden, Sarah P.
Damato, Stephen
Pathiraja, Pubudu N.
Nicum, Shibani
Gleeson, Fergus
Laios, Alexandros
Alsaadi, Abdulkhaliq
Santana Gonzalez, Laura
Motohara, Takeshi
Albukhari, Ashwag
Lu, Zhen
Bast, Robert C.
Harris, Adrian L.
Ejsing, Christer S.
Klemm, Robin W.
Yau, Christopher
Sauka-Spengler, Tatjana
Ahmed, Ahmed Ashour
author_facet Artibani, Mara
Masuda, Kenta
Hu, Zhiyuan
Rauher, Pascal C.
Mallett, Garry
Wietek, Nina
Morotti, Matteo
Chong, Kay
KaramiNejadRanjbar, Mohammad
Zois, Christos E.
Dhar, Sunanda
El-Sahhar, Salma
Campo, Leticia
Blagden, Sarah P.
Damato, Stephen
Pathiraja, Pubudu N.
Nicum, Shibani
Gleeson, Fergus
Laios, Alexandros
Alsaadi, Abdulkhaliq
Santana Gonzalez, Laura
Motohara, Takeshi
Albukhari, Ashwag
Lu, Zhen
Bast, Robert C.
Harris, Adrian L.
Ejsing, Christer S.
Klemm, Robin W.
Yau, Christopher
Sauka-Spengler, Tatjana
Ahmed, Ahmed Ashour
author_sort Artibani, Mara
collection PubMed
description Similar to tumor-initiating cells (TICs), minimal residual disease (MRD) is capable of reinitiating tumors and causing recurrence. However, the molecular characteristics of solid tumor MRD cells and drivers of their survival have remained elusive. Here we performed dense multiregion transcriptomics analysis of paired biopsies from 17 ovarian cancer patients before and after chemotherapy. We reveal that while MRD cells share important molecular signatures with TICs, they are also characterized by an adipocyte-like gene expression signature and a portion of them had undergone epithelial-mesenchymal transition (EMT). In a cell culture MRD model, MRD-mimic cells showed the same phenotype and were dependent on fatty acid oxidation (FAO) for survival and resistance to cytotoxic agents. These findings identify EMT and FAO as attractive targets to eradicate MRD in ovarian cancer and make a compelling case for the further testing of FAO inhibitors in treating MRD.
format Online
Article
Text
id pubmed-8262282
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Society for Clinical Investigation
record_format MEDLINE/PubMed
spelling pubmed-82622822021-07-13 Adipocyte-like signature in ovarian cancer minimal residual disease identifies metabolic vulnerabilities of tumor-initiating cells Artibani, Mara Masuda, Kenta Hu, Zhiyuan Rauher, Pascal C. Mallett, Garry Wietek, Nina Morotti, Matteo Chong, Kay KaramiNejadRanjbar, Mohammad Zois, Christos E. Dhar, Sunanda El-Sahhar, Salma Campo, Leticia Blagden, Sarah P. Damato, Stephen Pathiraja, Pubudu N. Nicum, Shibani Gleeson, Fergus Laios, Alexandros Alsaadi, Abdulkhaliq Santana Gonzalez, Laura Motohara, Takeshi Albukhari, Ashwag Lu, Zhen Bast, Robert C. Harris, Adrian L. Ejsing, Christer S. Klemm, Robin W. Yau, Christopher Sauka-Spengler, Tatjana Ahmed, Ahmed Ashour JCI Insight Research Article Similar to tumor-initiating cells (TICs), minimal residual disease (MRD) is capable of reinitiating tumors and causing recurrence. However, the molecular characteristics of solid tumor MRD cells and drivers of their survival have remained elusive. Here we performed dense multiregion transcriptomics analysis of paired biopsies from 17 ovarian cancer patients before and after chemotherapy. We reveal that while MRD cells share important molecular signatures with TICs, they are also characterized by an adipocyte-like gene expression signature and a portion of them had undergone epithelial-mesenchymal transition (EMT). In a cell culture MRD model, MRD-mimic cells showed the same phenotype and were dependent on fatty acid oxidation (FAO) for survival and resistance to cytotoxic agents. These findings identify EMT and FAO as attractive targets to eradicate MRD in ovarian cancer and make a compelling case for the further testing of FAO inhibitors in treating MRD. American Society for Clinical Investigation 2021-06-08 /pmc/articles/PMC8262282/ /pubmed/33945502 http://dx.doi.org/10.1172/jci.insight.147929 Text en © 2021 Artibani et al. https://creativecommons.org/licenses/by/4.0/This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Artibani, Mara
Masuda, Kenta
Hu, Zhiyuan
Rauher, Pascal C.
Mallett, Garry
Wietek, Nina
Morotti, Matteo
Chong, Kay
KaramiNejadRanjbar, Mohammad
Zois, Christos E.
Dhar, Sunanda
El-Sahhar, Salma
Campo, Leticia
Blagden, Sarah P.
Damato, Stephen
Pathiraja, Pubudu N.
Nicum, Shibani
Gleeson, Fergus
Laios, Alexandros
Alsaadi, Abdulkhaliq
Santana Gonzalez, Laura
Motohara, Takeshi
Albukhari, Ashwag
Lu, Zhen
Bast, Robert C.
Harris, Adrian L.
Ejsing, Christer S.
Klemm, Robin W.
Yau, Christopher
Sauka-Spengler, Tatjana
Ahmed, Ahmed Ashour
Adipocyte-like signature in ovarian cancer minimal residual disease identifies metabolic vulnerabilities of tumor-initiating cells
title Adipocyte-like signature in ovarian cancer minimal residual disease identifies metabolic vulnerabilities of tumor-initiating cells
title_full Adipocyte-like signature in ovarian cancer minimal residual disease identifies metabolic vulnerabilities of tumor-initiating cells
title_fullStr Adipocyte-like signature in ovarian cancer minimal residual disease identifies metabolic vulnerabilities of tumor-initiating cells
title_full_unstemmed Adipocyte-like signature in ovarian cancer minimal residual disease identifies metabolic vulnerabilities of tumor-initiating cells
title_short Adipocyte-like signature in ovarian cancer minimal residual disease identifies metabolic vulnerabilities of tumor-initiating cells
title_sort adipocyte-like signature in ovarian cancer minimal residual disease identifies metabolic vulnerabilities of tumor-initiating cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8262282/
https://www.ncbi.nlm.nih.gov/pubmed/33945502
http://dx.doi.org/10.1172/jci.insight.147929
work_keys_str_mv AT artibanimara adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT masudakenta adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT huzhiyuan adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT rauherpascalc adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT mallettgarry adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT wieteknina adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT morottimatteo adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT chongkay adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT karaminejadranjbarmohammad adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT zoischristose adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT dharsunanda adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT elsahharsalma adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT campoleticia adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT blagdensarahp adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT damatostephen adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT pathirajapubudun adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT nicumshibani adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT gleesonfergus adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT laiosalexandros adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT alsaadiabdulkhaliq adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT santanagonzalezlaura adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT motoharatakeshi adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT albukhariashwag adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT luzhen adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT bastrobertc adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT harrisadrianl adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT ejsingchristers adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT klemmrobinw adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT yauchristopher adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT saukaspenglertatjana adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells
AT ahmedahmedashour adipocytelikesignatureinovariancancerminimalresidualdiseaseidentifiesmetabolicvulnerabilitiesoftumorinitiatingcells