Cargando…

A Comprehensive Investigation of Genomic Variants in Prostate Cancer Reveals 30 Putative Regulatory Variants

Prostate cancer (PC) is the most frequently diagnosed non-skin cancer in the world. Previous studies have shown that genomic alterations represent the most common mechanism for molecular alterations responsible for the development and progression of PC. This highlights the importance of identifying...

Descripción completa

Detalles Bibliográficos
Autores principales: Labani, Mahdieh, Beheshti, Amin, Argha, Ahmadreza, Alinejad-Rokny, Hamid
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916892/
https://www.ncbi.nlm.nih.gov/pubmed/36768794
http://dx.doi.org/10.3390/ijms24032472
_version_ 1784886236758933504
author Labani, Mahdieh
Beheshti, Amin
Argha, Ahmadreza
Alinejad-Rokny, Hamid
author_facet Labani, Mahdieh
Beheshti, Amin
Argha, Ahmadreza
Alinejad-Rokny, Hamid
author_sort Labani, Mahdieh
collection PubMed
description Prostate cancer (PC) is the most frequently diagnosed non-skin cancer in the world. Previous studies have shown that genomic alterations represent the most common mechanism for molecular alterations responsible for the development and progression of PC. This highlights the importance of identifying functional genomic variants for early detection in high-risk PC individuals. Great efforts have been made to identify common protein-coding genetic variations; however, the impact of non-coding variations, including regulatory genetic variants, is not well understood. Identification of these variants and the underlying target genes will be a key step in improving the detection and treatment of PC. To gain an understanding of the functional impact of genetic variants, and in particular, regulatory variants in PC, we developed an integrative pipeline (AGV) that uses whole genome/exome sequences, GWAS SNPs, chromosome conformation capture data, and ChIP-Seq signals to investigate the potential impact of genomic variants on the underlying target genes in PC. We identified 646 putative regulatory variants, of which 30 significantly altered the expression of at least one protein-coding gene. Our analysis of chromatin interactions data (Hi-C) revealed that the 30 putative regulatory variants could affect 131 coding and non-coding genes. Interestingly, our study identified the 131 protein-coding genes that are involved in disease-related pathways, including Reactome and MSigDB, for most of which targeted treatment options are currently available. Notably, our analysis revealed several non-coding RNAs, including RP11-136K7.2 and RAMP2-AS1, as potential enhancer elements of the protein-coding genes CDH12 and EZH1, respectively. Our results provide a comprehensive map of genomic variants in PC and reveal their potential contribution to prostate cancer progression and development.
format Online
Article
Text
id pubmed-9916892
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-99168922023-02-11 A Comprehensive Investigation of Genomic Variants in Prostate Cancer Reveals 30 Putative Regulatory Variants Labani, Mahdieh Beheshti, Amin Argha, Ahmadreza Alinejad-Rokny, Hamid Int J Mol Sci Article Prostate cancer (PC) is the most frequently diagnosed non-skin cancer in the world. Previous studies have shown that genomic alterations represent the most common mechanism for molecular alterations responsible for the development and progression of PC. This highlights the importance of identifying functional genomic variants for early detection in high-risk PC individuals. Great efforts have been made to identify common protein-coding genetic variations; however, the impact of non-coding variations, including regulatory genetic variants, is not well understood. Identification of these variants and the underlying target genes will be a key step in improving the detection and treatment of PC. To gain an understanding of the functional impact of genetic variants, and in particular, regulatory variants in PC, we developed an integrative pipeline (AGV) that uses whole genome/exome sequences, GWAS SNPs, chromosome conformation capture data, and ChIP-Seq signals to investigate the potential impact of genomic variants on the underlying target genes in PC. We identified 646 putative regulatory variants, of which 30 significantly altered the expression of at least one protein-coding gene. Our analysis of chromatin interactions data (Hi-C) revealed that the 30 putative regulatory variants could affect 131 coding and non-coding genes. Interestingly, our study identified the 131 protein-coding genes that are involved in disease-related pathways, including Reactome and MSigDB, for most of which targeted treatment options are currently available. Notably, our analysis revealed several non-coding RNAs, including RP11-136K7.2 and RAMP2-AS1, as potential enhancer elements of the protein-coding genes CDH12 and EZH1, respectively. Our results provide a comprehensive map of genomic variants in PC and reveal their potential contribution to prostate cancer progression and development. MDPI 2023-01-27 /pmc/articles/PMC9916892/ /pubmed/36768794 http://dx.doi.org/10.3390/ijms24032472 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Labani, Mahdieh
Beheshti, Amin
Argha, Ahmadreza
Alinejad-Rokny, Hamid
A Comprehensive Investigation of Genomic Variants in Prostate Cancer Reveals 30 Putative Regulatory Variants
title A Comprehensive Investigation of Genomic Variants in Prostate Cancer Reveals 30 Putative Regulatory Variants
title_full A Comprehensive Investigation of Genomic Variants in Prostate Cancer Reveals 30 Putative Regulatory Variants
title_fullStr A Comprehensive Investigation of Genomic Variants in Prostate Cancer Reveals 30 Putative Regulatory Variants
title_full_unstemmed A Comprehensive Investigation of Genomic Variants in Prostate Cancer Reveals 30 Putative Regulatory Variants
title_short A Comprehensive Investigation of Genomic Variants in Prostate Cancer Reveals 30 Putative Regulatory Variants
title_sort comprehensive investigation of genomic variants in prostate cancer reveals 30 putative regulatory variants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9916892/
https://www.ncbi.nlm.nih.gov/pubmed/36768794
http://dx.doi.org/10.3390/ijms24032472
work_keys_str_mv AT labanimahdieh acomprehensiveinvestigationofgenomicvariantsinprostatecancerreveals30putativeregulatoryvariants
AT beheshtiamin acomprehensiveinvestigationofgenomicvariantsinprostatecancerreveals30putativeregulatoryvariants
AT arghaahmadreza acomprehensiveinvestigationofgenomicvariantsinprostatecancerreveals30putativeregulatoryvariants
AT alinejadroknyhamid acomprehensiveinvestigationofgenomicvariantsinprostatecancerreveals30putativeregulatoryvariants
AT labanimahdieh comprehensiveinvestigationofgenomicvariantsinprostatecancerreveals30putativeregulatoryvariants
AT beheshtiamin comprehensiveinvestigationofgenomicvariantsinprostatecancerreveals30putativeregulatoryvariants
AT arghaahmadreza comprehensiveinvestigationofgenomicvariantsinprostatecancerreveals30putativeregulatoryvariants
AT alinejadroknyhamid comprehensiveinvestigationofgenomicvariantsinprostatecancerreveals30putativeregulatoryvariants