Cargando…

Targeted Long-Read Bisulfite Sequencing Identifies Differences in the TERT Promoter Methylation Profiles between TERT Wild-Type and TERT Mutant Cancer Cells

SIMPLE SUMMARY: TERT promoter methylation is enriched in cancers lacking TERT genetic alterations (wild-type cancers), but its functional impact on TERT transcription remains elusive. We developed a long-read bisulfite-sequencing platform to characterize the TERT promoter methylation profile at a si...

Descripción completa

Detalles Bibliográficos
Autores principales: Lee, Seungjae, Chang, Ti-Cheng, Schreiner, Patrick, Fan, Yiping, Agarwal, Neeraj, Owens, Charles, Dummer, Reinhard, Kirkwood, John M., Barnhill, Raymond L., Theodorescu, Dan, Wu, Gang, Bahrami, Armita
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9406525/
https://www.ncbi.nlm.nih.gov/pubmed/36011010
http://dx.doi.org/10.3390/cancers14164018
_version_ 1784774142509187072
author Lee, Seungjae
Chang, Ti-Cheng
Schreiner, Patrick
Fan, Yiping
Agarwal, Neeraj
Owens, Charles
Dummer, Reinhard
Kirkwood, John M.
Barnhill, Raymond L.
Theodorescu, Dan
Wu, Gang
Bahrami, Armita
author_facet Lee, Seungjae
Chang, Ti-Cheng
Schreiner, Patrick
Fan, Yiping
Agarwal, Neeraj
Owens, Charles
Dummer, Reinhard
Kirkwood, John M.
Barnhill, Raymond L.
Theodorescu, Dan
Wu, Gang
Bahrami, Armita
author_sort Lee, Seungjae
collection PubMed
description SIMPLE SUMMARY: TERT promoter methylation is enriched in cancers lacking TERT genetic alterations (wild-type cancers), but its functional impact on TERT transcription remains elusive. We developed a long-read bisulfite-sequencing platform to characterize the TERT promoter methylation profile at a single-molecule level. In wild-type cancer cell lines, both epialleles were hypermethylated symmetrically on the TERT distal promoter. In the core and proximal promoter, by contrast, the transcribed epialleles were significantly more hypomethylated than the silent epialleles. Decitabine-therapy reduced the core and proximal (not the distal) promoter methylation and reactivated the silent allele. We showed that TERT allele-specific expression is amenable to in vitro epigenetic manipulation in wild-type cancers. ABSTRACT: Background: TERT promoter methylation, located several hundred base pairs upstream of the transcriptional start site, is cancer specific and correlates with increased TERT mRNA expression and poorer patient outcome. Promoter methylation, however, is not mutually exclusive to TERT activating genetic alterations, as predicted for functionally redundant mechanisms. To annotate the altered patterns of TERT promoter methylation and their relationship with gene expression, we applied a Pacific Biosciences-based, long-read, bisulfite-sequencing technology and compared the differences in the methylation marks between wild-type and mutant cancers in an allele-specific manner. Results: We cataloged TERT genetic alterations (i.e., promoter point mutations or structural variations), allele-specific promoter methylation patterns, and allele-specific expression levels in a cohort of 54 cancer cell lines. In heterozygous mutant cell lines, the mutant alleles were significantly less methylated than their silent, mutation-free alleles (p < 0.05). In wild-type cell lines, by contrast, both epialleles were equally methylated to high levels at the TERT distal promoter, but differentially methylated in the proximal regions. ChIP analysis showed that epialleles with the hypomethylated proximal and core promoter were enriched in the active histone mark H3K4me2/3, whereas epialleles that were methylated in those regions were enriched in the repressive histone mark H3K27me3. Decitabine therapy induced biallelic expression in the wild-type cancer cells, whereas the mutant cell lines were unaffected. Conclusions: Long-read bisulfite sequencing analysis revealed differences in the methylation profiles and responses to demethylating agents between TERT wild-type and genetically altered cancer cell lines. The causal relation between TERT promoter methylation and gene expression remains to be established.
format Online
Article
Text
id pubmed-9406525
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-94065252022-08-26 Targeted Long-Read Bisulfite Sequencing Identifies Differences in the TERT Promoter Methylation Profiles between TERT Wild-Type and TERT Mutant Cancer Cells Lee, Seungjae Chang, Ti-Cheng Schreiner, Patrick Fan, Yiping Agarwal, Neeraj Owens, Charles Dummer, Reinhard Kirkwood, John M. Barnhill, Raymond L. Theodorescu, Dan Wu, Gang Bahrami, Armita Cancers (Basel) Article SIMPLE SUMMARY: TERT promoter methylation is enriched in cancers lacking TERT genetic alterations (wild-type cancers), but its functional impact on TERT transcription remains elusive. We developed a long-read bisulfite-sequencing platform to characterize the TERT promoter methylation profile at a single-molecule level. In wild-type cancer cell lines, both epialleles were hypermethylated symmetrically on the TERT distal promoter. In the core and proximal promoter, by contrast, the transcribed epialleles were significantly more hypomethylated than the silent epialleles. Decitabine-therapy reduced the core and proximal (not the distal) promoter methylation and reactivated the silent allele. We showed that TERT allele-specific expression is amenable to in vitro epigenetic manipulation in wild-type cancers. ABSTRACT: Background: TERT promoter methylation, located several hundred base pairs upstream of the transcriptional start site, is cancer specific and correlates with increased TERT mRNA expression and poorer patient outcome. Promoter methylation, however, is not mutually exclusive to TERT activating genetic alterations, as predicted for functionally redundant mechanisms. To annotate the altered patterns of TERT promoter methylation and their relationship with gene expression, we applied a Pacific Biosciences-based, long-read, bisulfite-sequencing technology and compared the differences in the methylation marks between wild-type and mutant cancers in an allele-specific manner. Results: We cataloged TERT genetic alterations (i.e., promoter point mutations or structural variations), allele-specific promoter methylation patterns, and allele-specific expression levels in a cohort of 54 cancer cell lines. In heterozygous mutant cell lines, the mutant alleles were significantly less methylated than their silent, mutation-free alleles (p < 0.05). In wild-type cell lines, by contrast, both epialleles were equally methylated to high levels at the TERT distal promoter, but differentially methylated in the proximal regions. ChIP analysis showed that epialleles with the hypomethylated proximal and core promoter were enriched in the active histone mark H3K4me2/3, whereas epialleles that were methylated in those regions were enriched in the repressive histone mark H3K27me3. Decitabine therapy induced biallelic expression in the wild-type cancer cells, whereas the mutant cell lines were unaffected. Conclusions: Long-read bisulfite sequencing analysis revealed differences in the methylation profiles and responses to demethylating agents between TERT wild-type and genetically altered cancer cell lines. The causal relation between TERT promoter methylation and gene expression remains to be established. MDPI 2022-08-19 /pmc/articles/PMC9406525/ /pubmed/36011010 http://dx.doi.org/10.3390/cancers14164018 Text en © 2022 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
Lee, Seungjae
Chang, Ti-Cheng
Schreiner, Patrick
Fan, Yiping
Agarwal, Neeraj
Owens, Charles
Dummer, Reinhard
Kirkwood, John M.
Barnhill, Raymond L.
Theodorescu, Dan
Wu, Gang
Bahrami, Armita
Targeted Long-Read Bisulfite Sequencing Identifies Differences in the TERT Promoter Methylation Profiles between TERT Wild-Type and TERT Mutant Cancer Cells
title Targeted Long-Read Bisulfite Sequencing Identifies Differences in the TERT Promoter Methylation Profiles between TERT Wild-Type and TERT Mutant Cancer Cells
title_full Targeted Long-Read Bisulfite Sequencing Identifies Differences in the TERT Promoter Methylation Profiles between TERT Wild-Type and TERT Mutant Cancer Cells
title_fullStr Targeted Long-Read Bisulfite Sequencing Identifies Differences in the TERT Promoter Methylation Profiles between TERT Wild-Type and TERT Mutant Cancer Cells
title_full_unstemmed Targeted Long-Read Bisulfite Sequencing Identifies Differences in the TERT Promoter Methylation Profiles between TERT Wild-Type and TERT Mutant Cancer Cells
title_short Targeted Long-Read Bisulfite Sequencing Identifies Differences in the TERT Promoter Methylation Profiles between TERT Wild-Type and TERT Mutant Cancer Cells
title_sort targeted long-read bisulfite sequencing identifies differences in the tert promoter methylation profiles between tert wild-type and tert mutant cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9406525/
https://www.ncbi.nlm.nih.gov/pubmed/36011010
http://dx.doi.org/10.3390/cancers14164018
work_keys_str_mv AT leeseungjae targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT changticheng targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT schreinerpatrick targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT fanyiping targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT agarwalneeraj targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT owenscharles targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT dummerreinhard targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT kirkwoodjohnm targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT barnhillraymondl targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT theodorescudan targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT wugang targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells
AT bahramiarmita targetedlongreadbisulfitesequencingidentifiesdifferencesinthetertpromotermethylationprofilesbetweentertwildtypeandtertmutantcancercells