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PBRM1 loss in kidney cancer unbalances the proximal tubule master transcription factor hub to repress proximal tubule differentiation

PBRM1, a subunit of the PBAF coactivator complex that transcription factors use to activate target genes, is genetically inactivated in almost all clear cell renal cell cancers (RCCs). Using unbiased proteomic analyses, we find that PAX8, a master transcription factor driver of proximal tubule epith...

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Autores principales: Gu, Xiaorong, Enane, Francis, Tohme, Rita, Schuerger, Caroline, Radivoyevitch, Tomas, Parker, Yvonne, Zuberi, Eric, Przychodzen, Bartlomiej, Jha, Babal Kant, Lindner, Daniel, Rini, Brian, Saunthararajah, Yogen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8561673/
https://www.ncbi.nlm.nih.gov/pubmed/34551289
http://dx.doi.org/10.1016/j.celrep.2021.109747
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author Gu, Xiaorong
Enane, Francis
Tohme, Rita
Schuerger, Caroline
Radivoyevitch, Tomas
Parker, Yvonne
Zuberi, Eric
Przychodzen, Bartlomiej
Jha, Babal Kant
Lindner, Daniel
Rini, Brian
Saunthararajah, Yogen
author_facet Gu, Xiaorong
Enane, Francis
Tohme, Rita
Schuerger, Caroline
Radivoyevitch, Tomas
Parker, Yvonne
Zuberi, Eric
Przychodzen, Bartlomiej
Jha, Babal Kant
Lindner, Daniel
Rini, Brian
Saunthararajah, Yogen
author_sort Gu, Xiaorong
collection PubMed
description PBRM1, a subunit of the PBAF coactivator complex that transcription factors use to activate target genes, is genetically inactivated in almost all clear cell renal cell cancers (RCCs). Using unbiased proteomic analyses, we find that PAX8, a master transcription factor driver of proximal tubule epithelial fates, recruits PBRM1/PBAF. Reverse analyses of the PAX8 interactome confirm recruitment specifically of PBRM1/PBAF and not functionally similar BAF. More conspicuous in the PAX8 hub in RCC cells, however, are corepressors, which functionally oppose coactivators. Accordingly, key PAX8 target genes are repressed in RCC versus normal kidneys, with the loss of histone lysine-27 acetylation, but intact lysine-4 trimethylation, activation marks. Re-introduction of PBRM1, or depletion of opposing corepressors using siRNA or drugs, redress coregulator imbalance and release RCC cells to terminal epithelial fates. These mechanisms thus explain RCC resemblance to the proximal tubule lineage but with suppression of the late-epithelial program that normally terminates lineage-precursor proliferation.
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spelling pubmed-85616732021-11-02 PBRM1 loss in kidney cancer unbalances the proximal tubule master transcription factor hub to repress proximal tubule differentiation Gu, Xiaorong Enane, Francis Tohme, Rita Schuerger, Caroline Radivoyevitch, Tomas Parker, Yvonne Zuberi, Eric Przychodzen, Bartlomiej Jha, Babal Kant Lindner, Daniel Rini, Brian Saunthararajah, Yogen Cell Rep Article PBRM1, a subunit of the PBAF coactivator complex that transcription factors use to activate target genes, is genetically inactivated in almost all clear cell renal cell cancers (RCCs). Using unbiased proteomic analyses, we find that PAX8, a master transcription factor driver of proximal tubule epithelial fates, recruits PBRM1/PBAF. Reverse analyses of the PAX8 interactome confirm recruitment specifically of PBRM1/PBAF and not functionally similar BAF. More conspicuous in the PAX8 hub in RCC cells, however, are corepressors, which functionally oppose coactivators. Accordingly, key PAX8 target genes are repressed in RCC versus normal kidneys, with the loss of histone lysine-27 acetylation, but intact lysine-4 trimethylation, activation marks. Re-introduction of PBRM1, or depletion of opposing corepressors using siRNA or drugs, redress coregulator imbalance and release RCC cells to terminal epithelial fates. These mechanisms thus explain RCC resemblance to the proximal tubule lineage but with suppression of the late-epithelial program that normally terminates lineage-precursor proliferation. 2021-09-21 /pmc/articles/PMC8561673/ /pubmed/34551289 http://dx.doi.org/10.1016/j.celrep.2021.109747 Text en https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ).
spellingShingle Article
Gu, Xiaorong
Enane, Francis
Tohme, Rita
Schuerger, Caroline
Radivoyevitch, Tomas
Parker, Yvonne
Zuberi, Eric
Przychodzen, Bartlomiej
Jha, Babal Kant
Lindner, Daniel
Rini, Brian
Saunthararajah, Yogen
PBRM1 loss in kidney cancer unbalances the proximal tubule master transcription factor hub to repress proximal tubule differentiation
title PBRM1 loss in kidney cancer unbalances the proximal tubule master transcription factor hub to repress proximal tubule differentiation
title_full PBRM1 loss in kidney cancer unbalances the proximal tubule master transcription factor hub to repress proximal tubule differentiation
title_fullStr PBRM1 loss in kidney cancer unbalances the proximal tubule master transcription factor hub to repress proximal tubule differentiation
title_full_unstemmed PBRM1 loss in kidney cancer unbalances the proximal tubule master transcription factor hub to repress proximal tubule differentiation
title_short PBRM1 loss in kidney cancer unbalances the proximal tubule master transcription factor hub to repress proximal tubule differentiation
title_sort pbrm1 loss in kidney cancer unbalances the proximal tubule master transcription factor hub to repress proximal tubule differentiation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8561673/
https://www.ncbi.nlm.nih.gov/pubmed/34551289
http://dx.doi.org/10.1016/j.celrep.2021.109747
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