Cargando…

Genotype-Tailored ERK/MAPK Pathway and HDAC Inhibition Rewires the Apoptotic Rheostat to Trigger Colorectal Cancer Cell Death

The EGFR/RAS/MEK/ERK signaling pathway (ERK/MAPK) is hyperactivated in most colorectal cancers. A current limitation of inhibitors of this pathway is that they primarily induce cytostatic effects in colorectal cancer cells. Nevertheless, these drugs do induce expression of proapoptotic factors, sugg...

Descripción completa

Detalles Bibliográficos
Autores principales: Jenkins, Laura J., Luk, Ian Y., Fairlie, W. Douglas, Lee, Erinna F., Palmieri, Michelle, Schoffer, Kael L., Tan, Tao, Ng, Irvin, Vukelic, Natalia, Tran, Sharon, Tse, Janson W.T., Nightingale, Rebecca, Alam, Zakia, Chionh, Fiona, Iatropoulos, George, Ernst, Matthias, Afshar-Sterle, Shoukat, Desai, Jayesh, Gibbs, Peter, Sieber, Oliver M., Dhillon, Amardeep S., Tebbutt, Niall C., Mariadason, John M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for Cancer Research 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9808369/
https://www.ncbi.nlm.nih.gov/pubmed/36343387
http://dx.doi.org/10.1158/1535-7163.MCT-22-0101
_version_ 1784862928036429824
author Jenkins, Laura J.
Luk, Ian Y.
Fairlie, W. Douglas
Lee, Erinna F.
Palmieri, Michelle
Schoffer, Kael L.
Tan, Tao
Ng, Irvin
Vukelic, Natalia
Tran, Sharon
Tse, Janson W.T.
Nightingale, Rebecca
Alam, Zakia
Chionh, Fiona
Iatropoulos, George
Ernst, Matthias
Afshar-Sterle, Shoukat
Desai, Jayesh
Gibbs, Peter
Sieber, Oliver M.
Dhillon, Amardeep S.
Tebbutt, Niall C.
Mariadason, John M.
author_facet Jenkins, Laura J.
Luk, Ian Y.
Fairlie, W. Douglas
Lee, Erinna F.
Palmieri, Michelle
Schoffer, Kael L.
Tan, Tao
Ng, Irvin
Vukelic, Natalia
Tran, Sharon
Tse, Janson W.T.
Nightingale, Rebecca
Alam, Zakia
Chionh, Fiona
Iatropoulos, George
Ernst, Matthias
Afshar-Sterle, Shoukat
Desai, Jayesh
Gibbs, Peter
Sieber, Oliver M.
Dhillon, Amardeep S.
Tebbutt, Niall C.
Mariadason, John M.
author_sort Jenkins, Laura J.
collection PubMed
description The EGFR/RAS/MEK/ERK signaling pathway (ERK/MAPK) is hyperactivated in most colorectal cancers. A current limitation of inhibitors of this pathway is that they primarily induce cytostatic effects in colorectal cancer cells. Nevertheless, these drugs do induce expression of proapoptotic factors, suggesting they may prime colorectal cancer cells to undergo apoptosis. As histone deacetylase inhibitors (HDACis) induce expression of multiple proapoptotic proteins, we examined whether they could synergize with ERK/MAPK inhibitors to trigger colorectal cancer cell apoptosis. Combined MEK/ERK and HDAC inhibition synergistically induced apoptosis in colorectal cancer cell lines and patient-derived tumor organoids in vitro, and attenuated Apc-initiated adenoma formation in vivo. Mechanistically, combined MAPK/HDAC inhibition enhanced expression of the BH3-only proapoptotic proteins BIM and BMF, and their knockdown significantly attenuated MAPK/HDAC inhibitor–induced apoptosis. Importantly, we demonstrate that the paradigm of combined MAPK/HDAC inhibitor treatment to induce apoptosis can be tailored to specific MAPK genotypes in colorectal cancers, by combining an HDAC inhibitor with either an EGFR, KRAS(G12C) or BRAF(V600) inhibitor in KRAS/BRAF(WT); KRAS(G12C), BRAF(V600E) colorectal cancer cell lines, respectively. These findings identify a series of ERK/MAPK genotype-tailored treatment strategies that can readily undergo clinical testing for the treatment of colorectal cancer.
format Online
Article
Text
id pubmed-9808369
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Association for Cancer Research
record_format MEDLINE/PubMed
spelling pubmed-98083692023-02-08 Genotype-Tailored ERK/MAPK Pathway and HDAC Inhibition Rewires the Apoptotic Rheostat to Trigger Colorectal Cancer Cell Death Jenkins, Laura J. Luk, Ian Y. Fairlie, W. Douglas Lee, Erinna F. Palmieri, Michelle Schoffer, Kael L. Tan, Tao Ng, Irvin Vukelic, Natalia Tran, Sharon Tse, Janson W.T. Nightingale, Rebecca Alam, Zakia Chionh, Fiona Iatropoulos, George Ernst, Matthias Afshar-Sterle, Shoukat Desai, Jayesh Gibbs, Peter Sieber, Oliver M. Dhillon, Amardeep S. Tebbutt, Niall C. Mariadason, John M. Mol Cancer Ther Small Molecule Therapeutics The EGFR/RAS/MEK/ERK signaling pathway (ERK/MAPK) is hyperactivated in most colorectal cancers. A current limitation of inhibitors of this pathway is that they primarily induce cytostatic effects in colorectal cancer cells. Nevertheless, these drugs do induce expression of proapoptotic factors, suggesting they may prime colorectal cancer cells to undergo apoptosis. As histone deacetylase inhibitors (HDACis) induce expression of multiple proapoptotic proteins, we examined whether they could synergize with ERK/MAPK inhibitors to trigger colorectal cancer cell apoptosis. Combined MEK/ERK and HDAC inhibition synergistically induced apoptosis in colorectal cancer cell lines and patient-derived tumor organoids in vitro, and attenuated Apc-initiated adenoma formation in vivo. Mechanistically, combined MAPK/HDAC inhibition enhanced expression of the BH3-only proapoptotic proteins BIM and BMF, and their knockdown significantly attenuated MAPK/HDAC inhibitor–induced apoptosis. Importantly, we demonstrate that the paradigm of combined MAPK/HDAC inhibitor treatment to induce apoptosis can be tailored to specific MAPK genotypes in colorectal cancers, by combining an HDAC inhibitor with either an EGFR, KRAS(G12C) or BRAF(V600) inhibitor in KRAS/BRAF(WT); KRAS(G12C), BRAF(V600E) colorectal cancer cell lines, respectively. These findings identify a series of ERK/MAPK genotype-tailored treatment strategies that can readily undergo clinical testing for the treatment of colorectal cancer. American Association for Cancer Research 2023-01-03 2022-11-07 /pmc/articles/PMC9808369/ /pubmed/36343387 http://dx.doi.org/10.1158/1535-7163.MCT-22-0101 Text en ©2022 The Authors; Published by the American Association for Cancer Research https://creativecommons.org/licenses/by-nc-nd/4.0/This open access article is distributed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International (CC BY-NC-ND 4.0) license.
spellingShingle Small Molecule Therapeutics
Jenkins, Laura J.
Luk, Ian Y.
Fairlie, W. Douglas
Lee, Erinna F.
Palmieri, Michelle
Schoffer, Kael L.
Tan, Tao
Ng, Irvin
Vukelic, Natalia
Tran, Sharon
Tse, Janson W.T.
Nightingale, Rebecca
Alam, Zakia
Chionh, Fiona
Iatropoulos, George
Ernst, Matthias
Afshar-Sterle, Shoukat
Desai, Jayesh
Gibbs, Peter
Sieber, Oliver M.
Dhillon, Amardeep S.
Tebbutt, Niall C.
Mariadason, John M.
Genotype-Tailored ERK/MAPK Pathway and HDAC Inhibition Rewires the Apoptotic Rheostat to Trigger Colorectal Cancer Cell Death
title Genotype-Tailored ERK/MAPK Pathway and HDAC Inhibition Rewires the Apoptotic Rheostat to Trigger Colorectal Cancer Cell Death
title_full Genotype-Tailored ERK/MAPK Pathway and HDAC Inhibition Rewires the Apoptotic Rheostat to Trigger Colorectal Cancer Cell Death
title_fullStr Genotype-Tailored ERK/MAPK Pathway and HDAC Inhibition Rewires the Apoptotic Rheostat to Trigger Colorectal Cancer Cell Death
title_full_unstemmed Genotype-Tailored ERK/MAPK Pathway and HDAC Inhibition Rewires the Apoptotic Rheostat to Trigger Colorectal Cancer Cell Death
title_short Genotype-Tailored ERK/MAPK Pathway and HDAC Inhibition Rewires the Apoptotic Rheostat to Trigger Colorectal Cancer Cell Death
title_sort genotype-tailored erk/mapk pathway and hdac inhibition rewires the apoptotic rheostat to trigger colorectal cancer cell death
topic Small Molecule Therapeutics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9808369/
https://www.ncbi.nlm.nih.gov/pubmed/36343387
http://dx.doi.org/10.1158/1535-7163.MCT-22-0101
work_keys_str_mv AT jenkinslauraj genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT lukiany genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT fairliewdouglas genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT leeerinnaf genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT palmierimichelle genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT schofferkaell genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT tantao genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT ngirvin genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT vukelicnatalia genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT transharon genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT tsejansonwt genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT nightingalerebecca genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT alamzakia genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT chionhfiona genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT iatropoulosgeorge genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT ernstmatthias genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT afsharsterleshoukat genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT desaijayesh genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT gibbspeter genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT sieberoliverm genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT dhillonamardeeps genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT tebbuttniallc genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath
AT mariadasonjohnm genotypetailorederkmapkpathwayandhdacinhibitionrewirestheapoptoticrheostattotriggercolorectalcancercelldeath