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Targeting c-MYC through Interference with NAMPT and SIRT1 and Their Association to Oncogenic Drivers in Murine Serrated Intestinal Tumorigenesis()

We recently described a positive feedback loop connecting c-MYC, NAMPT, DBC1 and SIRT1 that contributes to unrestricted cancer cell proliferation. Here we determine the relevance of the loop for serrated route intestinal tumorigenesis using genetically well-defined Braf(V600E) and K-ras(G12D) mouse...

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Autores principales: Brandl, Lydia, Zhang, Yina, Kirstein, Nina, Sendelhofert, Andrea, Boos, Sophie Luise, Jung, Peter, Greten, Florian, Rad, Roland, Menssen, Antje
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6710297/
https://www.ncbi.nlm.nih.gov/pubmed/31442917
http://dx.doi.org/10.1016/j.neo.2019.07.009
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author Brandl, Lydia
Zhang, Yina
Kirstein, Nina
Sendelhofert, Andrea
Boos, Sophie Luise
Jung, Peter
Greten, Florian
Rad, Roland
Menssen, Antje
author_facet Brandl, Lydia
Zhang, Yina
Kirstein, Nina
Sendelhofert, Andrea
Boos, Sophie Luise
Jung, Peter
Greten, Florian
Rad, Roland
Menssen, Antje
author_sort Brandl, Lydia
collection PubMed
description We recently described a positive feedback loop connecting c-MYC, NAMPT, DBC1 and SIRT1 that contributes to unrestricted cancer cell proliferation. Here we determine the relevance of the loop for serrated route intestinal tumorigenesis using genetically well-defined Braf(V600E) and K-ras(G12D) mouse models. In both models we show that c-MYC and SIRT1 protein expression increased through progression from hyperplasia to invasive carcinomas and metastases. It correlated with high NAMPT expression and was directly associated to activation of the oncogenic drivers. Assessing functional and molecular consequences of pharmacological interference with factors of the loop, we found that inhibition of NAMPT resulted in apoptosis and reduced clonogenic growth in human BRAF-mutant colorectal cancer cell lines and patient-derived tumoroids. Blocking SIRT1 activity was only effective when combined with a PI3K inhibitor, whereas the latter antagonized the effects of NAMPT inhibition. Interfering with the positive feedback loop was associated with down-regulation of c-MYC and temporary de-repression of TP53, explaining the anti-proliferative and pro-apoptotic effects. In conclusion we show that the c-MYC-NAMPT-DBC1-SIRT1 positive feedback loop contributes to murine serrated tumor progression. Targeting the feedback loop exerted a unique, dual therapeutic effect of oncoprotein inhibition and tumor suppressor activation. It may therefore represent a promissing target for serrated colorectal cancer, and presumably for other cancer types with deregulated c-MYC.
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spelling pubmed-67102972019-08-29 Targeting c-MYC through Interference with NAMPT and SIRT1 and Their Association to Oncogenic Drivers in Murine Serrated Intestinal Tumorigenesis() Brandl, Lydia Zhang, Yina Kirstein, Nina Sendelhofert, Andrea Boos, Sophie Luise Jung, Peter Greten, Florian Rad, Roland Menssen, Antje Neoplasia Original article We recently described a positive feedback loop connecting c-MYC, NAMPT, DBC1 and SIRT1 that contributes to unrestricted cancer cell proliferation. Here we determine the relevance of the loop for serrated route intestinal tumorigenesis using genetically well-defined Braf(V600E) and K-ras(G12D) mouse models. In both models we show that c-MYC and SIRT1 protein expression increased through progression from hyperplasia to invasive carcinomas and metastases. It correlated with high NAMPT expression and was directly associated to activation of the oncogenic drivers. Assessing functional and molecular consequences of pharmacological interference with factors of the loop, we found that inhibition of NAMPT resulted in apoptosis and reduced clonogenic growth in human BRAF-mutant colorectal cancer cell lines and patient-derived tumoroids. Blocking SIRT1 activity was only effective when combined with a PI3K inhibitor, whereas the latter antagonized the effects of NAMPT inhibition. Interfering with the positive feedback loop was associated with down-regulation of c-MYC and temporary de-repression of TP53, explaining the anti-proliferative and pro-apoptotic effects. In conclusion we show that the c-MYC-NAMPT-DBC1-SIRT1 positive feedback loop contributes to murine serrated tumor progression. Targeting the feedback loop exerted a unique, dual therapeutic effect of oncoprotein inhibition and tumor suppressor activation. It may therefore represent a promissing target for serrated colorectal cancer, and presumably for other cancer types with deregulated c-MYC. Neoplasia Press 2019-08-20 /pmc/articles/PMC6710297/ /pubmed/31442917 http://dx.doi.org/10.1016/j.neo.2019.07.009 Text en © 2019 The Authors http://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/).
spellingShingle Original article
Brandl, Lydia
Zhang, Yina
Kirstein, Nina
Sendelhofert, Andrea
Boos, Sophie Luise
Jung, Peter
Greten, Florian
Rad, Roland
Menssen, Antje
Targeting c-MYC through Interference with NAMPT and SIRT1 and Their Association to Oncogenic Drivers in Murine Serrated Intestinal Tumorigenesis()
title Targeting c-MYC through Interference with NAMPT and SIRT1 and Their Association to Oncogenic Drivers in Murine Serrated Intestinal Tumorigenesis()
title_full Targeting c-MYC through Interference with NAMPT and SIRT1 and Their Association to Oncogenic Drivers in Murine Serrated Intestinal Tumorigenesis()
title_fullStr Targeting c-MYC through Interference with NAMPT and SIRT1 and Their Association to Oncogenic Drivers in Murine Serrated Intestinal Tumorigenesis()
title_full_unstemmed Targeting c-MYC through Interference with NAMPT and SIRT1 and Their Association to Oncogenic Drivers in Murine Serrated Intestinal Tumorigenesis()
title_short Targeting c-MYC through Interference with NAMPT and SIRT1 and Their Association to Oncogenic Drivers in Murine Serrated Intestinal Tumorigenesis()
title_sort targeting c-myc through interference with nampt and sirt1 and their association to oncogenic drivers in murine serrated intestinal tumorigenesis()
topic Original article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6710297/
https://www.ncbi.nlm.nih.gov/pubmed/31442917
http://dx.doi.org/10.1016/j.neo.2019.07.009
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