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Oncogenic PKA signaling increases c-MYC protein expression through multiple targetable mechanisms

Genetic alterations that activate protein kinase A (PKA) are found in many tumor types. Yet, their downstream oncogenic signaling mechanisms are poorly understood. We used global phosphoproteomics and kinase activity profiling to map conserved signaling outputs driven by a range of genetic changes t...

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Autores principales: Chan, Gary KL, Maisel, Samantha, Hwang, Yeonjoo C, Pascual, Bryan C, Wolber, Rebecca RB, Vu, Phuong, Patra, Krushna C, Bouhaddou, Mehdi, Kenerson, Heidi L, Lim, Huat C, Long, Donald, Yeung, Raymond S, Sethupathy, Praveen, Swaney, Danielle L, Krogan, Nevan J, Turnham, Rigney E, Riehle, Kimberly J, Scott, John D, Bardeesy, Nabeel, Gordan, John D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925115/
https://www.ncbi.nlm.nih.gov/pubmed/36692000
http://dx.doi.org/10.7554/eLife.69521
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author Chan, Gary KL
Maisel, Samantha
Hwang, Yeonjoo C
Pascual, Bryan C
Wolber, Rebecca RB
Vu, Phuong
Patra, Krushna C
Bouhaddou, Mehdi
Kenerson, Heidi L
Lim, Huat C
Long, Donald
Yeung, Raymond S
Sethupathy, Praveen
Swaney, Danielle L
Krogan, Nevan J
Turnham, Rigney E
Riehle, Kimberly J
Scott, John D
Bardeesy, Nabeel
Gordan, John D
author_facet Chan, Gary KL
Maisel, Samantha
Hwang, Yeonjoo C
Pascual, Bryan C
Wolber, Rebecca RB
Vu, Phuong
Patra, Krushna C
Bouhaddou, Mehdi
Kenerson, Heidi L
Lim, Huat C
Long, Donald
Yeung, Raymond S
Sethupathy, Praveen
Swaney, Danielle L
Krogan, Nevan J
Turnham, Rigney E
Riehle, Kimberly J
Scott, John D
Bardeesy, Nabeel
Gordan, John D
author_sort Chan, Gary KL
collection PubMed
description Genetic alterations that activate protein kinase A (PKA) are found in many tumor types. Yet, their downstream oncogenic signaling mechanisms are poorly understood. We used global phosphoproteomics and kinase activity profiling to map conserved signaling outputs driven by a range of genetic changes that activate PKA in human cancer. Two signaling networks were identified downstream of PKA: RAS/MAPK components and an Aurora Kinase A (AURKA)/glycogen synthase kinase (GSK3) sub-network with activity toward MYC oncoproteins. Findings were validated in two PKA-dependent cancer models: a novel, patient-derived fibrolamellar carcinoma (FLC) line that expresses a DNAJ-PKAc fusion and a PKA-addicted melanoma model with a mutant type I PKA regulatory subunit. We identify PKA signals that can influence both de novo translation and stability of the proto-oncogene c-MYC. However, the primary mechanism of PKA effects on MYC in our cell models was translation and could be blocked with the eIF4A inhibitor zotatifin. This compound dramatically reduced c-MYC expression and inhibited FLC cell line growth in vitro. Thus, targeting PKA effects on translation is a potential treatment strategy for FLC and other PKA-driven cancers.
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spelling pubmed-99251152023-02-14 Oncogenic PKA signaling increases c-MYC protein expression through multiple targetable mechanisms Chan, Gary KL Maisel, Samantha Hwang, Yeonjoo C Pascual, Bryan C Wolber, Rebecca RB Vu, Phuong Patra, Krushna C Bouhaddou, Mehdi Kenerson, Heidi L Lim, Huat C Long, Donald Yeung, Raymond S Sethupathy, Praveen Swaney, Danielle L Krogan, Nevan J Turnham, Rigney E Riehle, Kimberly J Scott, John D Bardeesy, Nabeel Gordan, John D eLife Cancer Biology Genetic alterations that activate protein kinase A (PKA) are found in many tumor types. Yet, their downstream oncogenic signaling mechanisms are poorly understood. We used global phosphoproteomics and kinase activity profiling to map conserved signaling outputs driven by a range of genetic changes that activate PKA in human cancer. Two signaling networks were identified downstream of PKA: RAS/MAPK components and an Aurora Kinase A (AURKA)/glycogen synthase kinase (GSK3) sub-network with activity toward MYC oncoproteins. Findings were validated in two PKA-dependent cancer models: a novel, patient-derived fibrolamellar carcinoma (FLC) line that expresses a DNAJ-PKAc fusion and a PKA-addicted melanoma model with a mutant type I PKA regulatory subunit. We identify PKA signals that can influence both de novo translation and stability of the proto-oncogene c-MYC. However, the primary mechanism of PKA effects on MYC in our cell models was translation and could be blocked with the eIF4A inhibitor zotatifin. This compound dramatically reduced c-MYC expression and inhibited FLC cell line growth in vitro. Thus, targeting PKA effects on translation is a potential treatment strategy for FLC and other PKA-driven cancers. eLife Sciences Publications, Ltd 2023-01-24 /pmc/articles/PMC9925115/ /pubmed/36692000 http://dx.doi.org/10.7554/eLife.69521 Text en © 2023, Chan et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cancer Biology
Chan, Gary KL
Maisel, Samantha
Hwang, Yeonjoo C
Pascual, Bryan C
Wolber, Rebecca RB
Vu, Phuong
Patra, Krushna C
Bouhaddou, Mehdi
Kenerson, Heidi L
Lim, Huat C
Long, Donald
Yeung, Raymond S
Sethupathy, Praveen
Swaney, Danielle L
Krogan, Nevan J
Turnham, Rigney E
Riehle, Kimberly J
Scott, John D
Bardeesy, Nabeel
Gordan, John D
Oncogenic PKA signaling increases c-MYC protein expression through multiple targetable mechanisms
title Oncogenic PKA signaling increases c-MYC protein expression through multiple targetable mechanisms
title_full Oncogenic PKA signaling increases c-MYC protein expression through multiple targetable mechanisms
title_fullStr Oncogenic PKA signaling increases c-MYC protein expression through multiple targetable mechanisms
title_full_unstemmed Oncogenic PKA signaling increases c-MYC protein expression through multiple targetable mechanisms
title_short Oncogenic PKA signaling increases c-MYC protein expression through multiple targetable mechanisms
title_sort oncogenic pka signaling increases c-myc protein expression through multiple targetable mechanisms
topic Cancer Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9925115/
https://www.ncbi.nlm.nih.gov/pubmed/36692000
http://dx.doi.org/10.7554/eLife.69521
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