Cargando…

A genetically defined disease model reveals that urothelial cells can initiate divergent bladder cancer phenotypes

Small cell carcinoma of the bladder (SCCB) is a rare and lethal phenotype of bladder cancer. The pathogenesis and molecular features are unknown. Here, we established a genetically engineered SCCB model and a cohort of patient SCCB and urothelial carcinoma samples to characterize molecular similarit...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Liang, Smith, Bryan A., Balanis, Nikolas G., Tsai, Brandon L., Nguyen, Kim, Cheng, Michael W., Obusan, Matthew B., Esedebe, Favour N., Patel, Saahil J., Zhang, Hanwei, Clark, Peter M., Sisk, Anthony E., Said, Jonathan W., Huang, Jiaoti, Graeber, Thomas G., Witte, Owen N., Chin, Arnold I., Park, Jung Wook
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6955337/
https://www.ncbi.nlm.nih.gov/pubmed/31871155
http://dx.doi.org/10.1073/pnas.1915770117
_version_ 1783486921830301696
author Wang, Liang
Smith, Bryan A.
Balanis, Nikolas G.
Tsai, Brandon L.
Nguyen, Kim
Cheng, Michael W.
Obusan, Matthew B.
Esedebe, Favour N.
Patel, Saahil J.
Zhang, Hanwei
Clark, Peter M.
Sisk, Anthony E.
Said, Jonathan W.
Huang, Jiaoti
Graeber, Thomas G.
Witte, Owen N.
Chin, Arnold I.
Park, Jung Wook
author_facet Wang, Liang
Smith, Bryan A.
Balanis, Nikolas G.
Tsai, Brandon L.
Nguyen, Kim
Cheng, Michael W.
Obusan, Matthew B.
Esedebe, Favour N.
Patel, Saahil J.
Zhang, Hanwei
Clark, Peter M.
Sisk, Anthony E.
Said, Jonathan W.
Huang, Jiaoti
Graeber, Thomas G.
Witte, Owen N.
Chin, Arnold I.
Park, Jung Wook
author_sort Wang, Liang
collection PubMed
description Small cell carcinoma of the bladder (SCCB) is a rare and lethal phenotype of bladder cancer. The pathogenesis and molecular features are unknown. Here, we established a genetically engineered SCCB model and a cohort of patient SCCB and urothelial carcinoma samples to characterize molecular similarities and differences between bladder cancer phenotypes. We demonstrate that SCCB shares a urothelial origin with other bladder cancer phenotypes by showing that urothelial cells driven by a set of defined oncogenic factors give rise to a mixture of tumor phenotypes, including small cell carcinoma, urothelial carcinoma, and squamous cell carcinoma. Tumor-derived single-cell clones also give rise to both SCCB and urothelial carcinoma in xenografts. Despite this shared urothelial origin, clinical SCCB samples have a distinct transcriptional profile and a unique transcriptional regulatory network. Using the transcriptional profile from our cohort, we identified cell surface proteins (CSPs) associated with the SCCB phenotype. We found that the majority of SCCB samples have PD-L1 expression in both tumor cells and tumor-infiltrating lymphocytes, suggesting that immune checkpoint inhibitors could be a treatment option for SCCB. We further demonstrate that our genetically engineered tumor model is a representative tool for investigating CSPs in SCCB by showing that it shares a similar a CSP profile with clinical samples and expresses SCCB–up-regulated CSPs at both the mRNA and protein levels. Our findings reveal distinct molecular features of SCCB and provide a transcriptional dataset and a preclinical model for further investigating SCCB biology.
format Online
Article
Text
id pubmed-6955337
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-69553372020-01-14 A genetically defined disease model reveals that urothelial cells can initiate divergent bladder cancer phenotypes Wang, Liang Smith, Bryan A. Balanis, Nikolas G. Tsai, Brandon L. Nguyen, Kim Cheng, Michael W. Obusan, Matthew B. Esedebe, Favour N. Patel, Saahil J. Zhang, Hanwei Clark, Peter M. Sisk, Anthony E. Said, Jonathan W. Huang, Jiaoti Graeber, Thomas G. Witte, Owen N. Chin, Arnold I. Park, Jung Wook Proc Natl Acad Sci U S A Biological Sciences Small cell carcinoma of the bladder (SCCB) is a rare and lethal phenotype of bladder cancer. The pathogenesis and molecular features are unknown. Here, we established a genetically engineered SCCB model and a cohort of patient SCCB and urothelial carcinoma samples to characterize molecular similarities and differences between bladder cancer phenotypes. We demonstrate that SCCB shares a urothelial origin with other bladder cancer phenotypes by showing that urothelial cells driven by a set of defined oncogenic factors give rise to a mixture of tumor phenotypes, including small cell carcinoma, urothelial carcinoma, and squamous cell carcinoma. Tumor-derived single-cell clones also give rise to both SCCB and urothelial carcinoma in xenografts. Despite this shared urothelial origin, clinical SCCB samples have a distinct transcriptional profile and a unique transcriptional regulatory network. Using the transcriptional profile from our cohort, we identified cell surface proteins (CSPs) associated with the SCCB phenotype. We found that the majority of SCCB samples have PD-L1 expression in both tumor cells and tumor-infiltrating lymphocytes, suggesting that immune checkpoint inhibitors could be a treatment option for SCCB. We further demonstrate that our genetically engineered tumor model is a representative tool for investigating CSPs in SCCB by showing that it shares a similar a CSP profile with clinical samples and expresses SCCB–up-regulated CSPs at both the mRNA and protein levels. Our findings reveal distinct molecular features of SCCB and provide a transcriptional dataset and a preclinical model for further investigating SCCB biology. National Academy of Sciences 2020-01-07 2019-12-23 /pmc/articles/PMC6955337/ /pubmed/31871155 http://dx.doi.org/10.1073/pnas.1915770117 Text en Copyright © 2020 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Wang, Liang
Smith, Bryan A.
Balanis, Nikolas G.
Tsai, Brandon L.
Nguyen, Kim
Cheng, Michael W.
Obusan, Matthew B.
Esedebe, Favour N.
Patel, Saahil J.
Zhang, Hanwei
Clark, Peter M.
Sisk, Anthony E.
Said, Jonathan W.
Huang, Jiaoti
Graeber, Thomas G.
Witte, Owen N.
Chin, Arnold I.
Park, Jung Wook
A genetically defined disease model reveals that urothelial cells can initiate divergent bladder cancer phenotypes
title A genetically defined disease model reveals that urothelial cells can initiate divergent bladder cancer phenotypes
title_full A genetically defined disease model reveals that urothelial cells can initiate divergent bladder cancer phenotypes
title_fullStr A genetically defined disease model reveals that urothelial cells can initiate divergent bladder cancer phenotypes
title_full_unstemmed A genetically defined disease model reveals that urothelial cells can initiate divergent bladder cancer phenotypes
title_short A genetically defined disease model reveals that urothelial cells can initiate divergent bladder cancer phenotypes
title_sort genetically defined disease model reveals that urothelial cells can initiate divergent bladder cancer phenotypes
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6955337/
https://www.ncbi.nlm.nih.gov/pubmed/31871155
http://dx.doi.org/10.1073/pnas.1915770117
work_keys_str_mv AT wangliang ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT smithbryana ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT balanisnikolasg ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT tsaibrandonl ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT nguyenkim ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT chengmichaelw ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT obusanmatthewb ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT esedebefavourn ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT patelsaahilj ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT zhanghanwei ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT clarkpeterm ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT siskanthonye ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT saidjonathanw ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT huangjiaoti ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT graeberthomasg ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT witteowenn ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT chinarnoldi ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT parkjungwook ageneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT wangliang geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT smithbryana geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT balanisnikolasg geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT tsaibrandonl geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT nguyenkim geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT chengmichaelw geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT obusanmatthewb geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT esedebefavourn geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT patelsaahilj geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT zhanghanwei geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT clarkpeterm geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT siskanthonye geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT saidjonathanw geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT huangjiaoti geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT graeberthomasg geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT witteowenn geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT chinarnoldi geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes
AT parkjungwook geneticallydefineddiseasemodelrevealsthaturothelialcellscaninitiatedivergentbladdercancerphenotypes