Cargando…

DNA Methylation Landscapes of Prostate Cancer Brain Metastasis Are Shaped by Early Driver Genetic Alterations

Metastases from primary prostate cancers to rare locations, such as the brain, are becoming more common due to longer life expectancy resulting from improved treatments. Epigenetic dysregulation is a feature of primary prostate cancer, and distinct DNA methylation profiles have been shown to be asso...

Descripción completa

Detalles Bibliográficos
Autores principales: Gallon, John, Rodriguez-Calero, Antonio, Benjak, Andrej, Akhoundova, Dilara, Maletti, Sina, Amstutz, Ursula, Hewer, Ekkehard, Genitsch, Vera, Fleischmann, Achim, Rushing, Elisabeth J., Grobholz, Rainer, Fischer, Ingeborg, Jochum, Wolfram, Cathomas, Gieri, Osunkoya, Adeboye O., Bubendorf, Lukas, Moch, Holger, Thalmann, George, Feng, Felix Y., Gillessen, Silke, Ng, Charlotte K.Y., Rubin, Mark A., Piscuoglio, Salvatore
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/PMC10102845/
https://www.ncbi.nlm.nih.gov/pubmed/36749655
http://dx.doi.org/10.1158/0008-5472.CAN-22-2236
_version_ 1785025772845531136
author Gallon, John
Rodriguez-Calero, Antonio
Benjak, Andrej
Akhoundova, Dilara
Maletti, Sina
Amstutz, Ursula
Hewer, Ekkehard
Genitsch, Vera
Fleischmann, Achim
Rushing, Elisabeth J.
Grobholz, Rainer
Fischer, Ingeborg
Jochum, Wolfram
Cathomas, Gieri
Osunkoya, Adeboye O.
Bubendorf, Lukas
Moch, Holger
Thalmann, George
Feng, Felix Y.
Gillessen, Silke
Ng, Charlotte K.Y.
Rubin, Mark A.
Piscuoglio, Salvatore
author_facet Gallon, John
Rodriguez-Calero, Antonio
Benjak, Andrej
Akhoundova, Dilara
Maletti, Sina
Amstutz, Ursula
Hewer, Ekkehard
Genitsch, Vera
Fleischmann, Achim
Rushing, Elisabeth J.
Grobholz, Rainer
Fischer, Ingeborg
Jochum, Wolfram
Cathomas, Gieri
Osunkoya, Adeboye O.
Bubendorf, Lukas
Moch, Holger
Thalmann, George
Feng, Felix Y.
Gillessen, Silke
Ng, Charlotte K.Y.
Rubin, Mark A.
Piscuoglio, Salvatore
author_sort Gallon, John
collection PubMed
description Metastases from primary prostate cancers to rare locations, such as the brain, are becoming more common due to longer life expectancy resulting from improved treatments. Epigenetic dysregulation is a feature of primary prostate cancer, and distinct DNA methylation profiles have been shown to be associated with the mutually exclusive SPOP-mutant or TMPRSS2-ERG fusion genetic backgrounds. Using a cohort of prostate cancer brain metastases (PCBM) from 42 patients, with matched primary tumors for 17 patients, we carried out a DNA methylation analysis to examine the epigenetic distinction between primary prostate cancer and PCBM, the association between epigenetic alterations and mutational background, and particular epigenetic alterations that may be associated with PCBM. Multiregion sampling of PCBM revealed epigenetic stability within metastases. Aberrant methylation in PCBM was associated with mutational background and PRC2 complex activity, an effect that is particularly pronounced in SPOP-mutant PCBM. While PCBM displayed a CpG island hypermethylator phenotype, hypomethylation at the promoters of genes involved in neuroactive ligand–receptor interaction and cell adhesion molecules such as GABRB3, CLDN8, and CLDN4 was also observed, suggesting that cells from primary tumors may require specific reprogramming to form brain metastasis. This study revealed the DNA methylation landscapes of PCBM and the potential mechanisms and effects of PCBM-associated aberrant DNA methylation. SIGNIFICANCE: DNA methylation analysis reveals the molecular characteristics of PCBM and may serve as a starting point for efforts to identify and target susceptibilities of these rare metastases.
format Online
Article
Text
id pubmed-10102845
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher American Association for Cancer Research
record_format MEDLINE/PubMed
spelling pubmed-101028452023-04-15 DNA Methylation Landscapes of Prostate Cancer Brain Metastasis Are Shaped by Early Driver Genetic Alterations Gallon, John Rodriguez-Calero, Antonio Benjak, Andrej Akhoundova, Dilara Maletti, Sina Amstutz, Ursula Hewer, Ekkehard Genitsch, Vera Fleischmann, Achim Rushing, Elisabeth J. Grobholz, Rainer Fischer, Ingeborg Jochum, Wolfram Cathomas, Gieri Osunkoya, Adeboye O. Bubendorf, Lukas Moch, Holger Thalmann, George Feng, Felix Y. Gillessen, Silke Ng, Charlotte K.Y. Rubin, Mark A. Piscuoglio, Salvatore Cancer Res Genome and Epigenome Metastases from primary prostate cancers to rare locations, such as the brain, are becoming more common due to longer life expectancy resulting from improved treatments. Epigenetic dysregulation is a feature of primary prostate cancer, and distinct DNA methylation profiles have been shown to be associated with the mutually exclusive SPOP-mutant or TMPRSS2-ERG fusion genetic backgrounds. Using a cohort of prostate cancer brain metastases (PCBM) from 42 patients, with matched primary tumors for 17 patients, we carried out a DNA methylation analysis to examine the epigenetic distinction between primary prostate cancer and PCBM, the association between epigenetic alterations and mutational background, and particular epigenetic alterations that may be associated with PCBM. Multiregion sampling of PCBM revealed epigenetic stability within metastases. Aberrant methylation in PCBM was associated with mutational background and PRC2 complex activity, an effect that is particularly pronounced in SPOP-mutant PCBM. While PCBM displayed a CpG island hypermethylator phenotype, hypomethylation at the promoters of genes involved in neuroactive ligand–receptor interaction and cell adhesion molecules such as GABRB3, CLDN8, and CLDN4 was also observed, suggesting that cells from primary tumors may require specific reprogramming to form brain metastasis. This study revealed the DNA methylation landscapes of PCBM and the potential mechanisms and effects of PCBM-associated aberrant DNA methylation. SIGNIFICANCE: DNA methylation analysis reveals the molecular characteristics of PCBM and may serve as a starting point for efforts to identify and target susceptibilities of these rare metastases. American Association for Cancer Research 2023-04-14 2023-02-07 /pmc/articles/PMC10102845/ /pubmed/36749655 http://dx.doi.org/10.1158/0008-5472.CAN-22-2236 Text en ©2023 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 Genome and Epigenome
Gallon, John
Rodriguez-Calero, Antonio
Benjak, Andrej
Akhoundova, Dilara
Maletti, Sina
Amstutz, Ursula
Hewer, Ekkehard
Genitsch, Vera
Fleischmann, Achim
Rushing, Elisabeth J.
Grobholz, Rainer
Fischer, Ingeborg
Jochum, Wolfram
Cathomas, Gieri
Osunkoya, Adeboye O.
Bubendorf, Lukas
Moch, Holger
Thalmann, George
Feng, Felix Y.
Gillessen, Silke
Ng, Charlotte K.Y.
Rubin, Mark A.
Piscuoglio, Salvatore
DNA Methylation Landscapes of Prostate Cancer Brain Metastasis Are Shaped by Early Driver Genetic Alterations
title DNA Methylation Landscapes of Prostate Cancer Brain Metastasis Are Shaped by Early Driver Genetic Alterations
title_full DNA Methylation Landscapes of Prostate Cancer Brain Metastasis Are Shaped by Early Driver Genetic Alterations
title_fullStr DNA Methylation Landscapes of Prostate Cancer Brain Metastasis Are Shaped by Early Driver Genetic Alterations
title_full_unstemmed DNA Methylation Landscapes of Prostate Cancer Brain Metastasis Are Shaped by Early Driver Genetic Alterations
title_short DNA Methylation Landscapes of Prostate Cancer Brain Metastasis Are Shaped by Early Driver Genetic Alterations
title_sort dna methylation landscapes of prostate cancer brain metastasis are shaped by early driver genetic alterations
topic Genome and Epigenome
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10102845/
https://www.ncbi.nlm.nih.gov/pubmed/36749655
http://dx.doi.org/10.1158/0008-5472.CAN-22-2236
work_keys_str_mv AT gallonjohn dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT rodriguezcaleroantonio dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT benjakandrej dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT akhoundovadilara dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT malettisina dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT amstutzursula dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT hewerekkehard dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT genitschvera dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT fleischmannachim dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT rushingelisabethj dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT grobholzrainer dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT fischeringeborg dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT jochumwolfram dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT cathomasgieri dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT osunkoyaadeboyeo dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT bubendorflukas dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT mochholger dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT thalmanngeorge dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT fengfelixy dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT gillessensilke dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT ngcharlotteky dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT rubinmarka dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations
AT piscuogliosalvatore dnamethylationlandscapesofprostatecancerbrainmetastasisareshapedbyearlydrivergeneticalterations