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Validation of Myc-Associated Protein X (MAX) regulation in growth hormone secreting and nonfunctional pituitary adenoma

INTRODUCTION: Many patients with growth hormone-secreting pituitary adenoma (GHPA) fail to achieve biochemical remission, warranting investigation into epigenetic and molecular signatures associated with tumorigenesis and hormonal secretion. Prior work exploring the DNA methylome showed Myc-Associat...

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Autores principales: Tucker, Douglass W., Pangal, Dhiraj J., Du, Robin, Gogia, Angad S., Tafreshi, Ali, Ruzevick, Jacob, Hurth, Kyle T., Triche, Tim, Micko, Alexander, Carpten, John D., Shiroishi, Mark S., Carmichael, John D., Rhie, Suhn K., Zada, Gabriel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138191/
https://www.ncbi.nlm.nih.gov/pubmed/37104368
http://dx.doi.org/10.1371/journal.pone.0284949
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author Tucker, Douglass W.
Pangal, Dhiraj J.
Du, Robin
Gogia, Angad S.
Tafreshi, Ali
Ruzevick, Jacob
Hurth, Kyle T.
Triche, Tim
Micko, Alexander
Carpten, John D.
Shiroishi, Mark S.
Carmichael, John D.
Rhie, Suhn K.
Zada, Gabriel
author_facet Tucker, Douglass W.
Pangal, Dhiraj J.
Du, Robin
Gogia, Angad S.
Tafreshi, Ali
Ruzevick, Jacob
Hurth, Kyle T.
Triche, Tim
Micko, Alexander
Carpten, John D.
Shiroishi, Mark S.
Carmichael, John D.
Rhie, Suhn K.
Zada, Gabriel
author_sort Tucker, Douglass W.
collection PubMed
description INTRODUCTION: Many patients with growth hormone-secreting pituitary adenoma (GHPA) fail to achieve biochemical remission, warranting investigation into epigenetic and molecular signatures associated with tumorigenesis and hormonal secretion. Prior work exploring the DNA methylome showed Myc-Associated Protein X (MAX), a transcription factor involved in cell cycle regulation, was differentially methylated between GHPA and nonfunctional pituitary adenoma (NFPA). We aimed to validate the differential DNA methylation and related MAX protein expression profiles between NFPA and GHPA. METHODS: DNA methylation levels were measured in 52 surgically resected tumors (37 NFPA, 15 GHPA) at ~100,000 known MAX binding sites derived using ChIP-seq analysis from ENCODE. Findings were correlated with MAX protein expression using a constructed tissue microarray (TMA). Gene ontology analysis was performed to explore downstream genetic and signaling pathways regulated by MAX. RESULTS: GHPA had more hypomethylation events across all known MAX binding sites. Of binding sites defined using ChIP-seq analysis, 1,551 sites had significantly different methylation patterns between the two cohorts; 432 occurred near promoter regions potentially regulated by MAX, including promoters of TNF and MMP9. Gene ontology analysis suggested enrichment in genes involved in oxygen response, immune system regulation, and cell proliferation. Thirteen MAX binding sites were within coding regions of genes. GHPA demonstrated significantly increased expression of MAX protein compared to NFPA. CONCLUSION: GHPA have significantly different DNA methylation and downstream protein expression levels of MAX compared to NFPA. These differences may influence mechanisms involved with cellular proliferation, tumor invasion and hormonal secretion.
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spelling pubmed-101381912023-04-28 Validation of Myc-Associated Protein X (MAX) regulation in growth hormone secreting and nonfunctional pituitary adenoma Tucker, Douglass W. Pangal, Dhiraj J. Du, Robin Gogia, Angad S. Tafreshi, Ali Ruzevick, Jacob Hurth, Kyle T. Triche, Tim Micko, Alexander Carpten, John D. Shiroishi, Mark S. Carmichael, John D. Rhie, Suhn K. Zada, Gabriel PLoS One Research Article INTRODUCTION: Many patients with growth hormone-secreting pituitary adenoma (GHPA) fail to achieve biochemical remission, warranting investigation into epigenetic and molecular signatures associated with tumorigenesis and hormonal secretion. Prior work exploring the DNA methylome showed Myc-Associated Protein X (MAX), a transcription factor involved in cell cycle regulation, was differentially methylated between GHPA and nonfunctional pituitary adenoma (NFPA). We aimed to validate the differential DNA methylation and related MAX protein expression profiles between NFPA and GHPA. METHODS: DNA methylation levels were measured in 52 surgically resected tumors (37 NFPA, 15 GHPA) at ~100,000 known MAX binding sites derived using ChIP-seq analysis from ENCODE. Findings were correlated with MAX protein expression using a constructed tissue microarray (TMA). Gene ontology analysis was performed to explore downstream genetic and signaling pathways regulated by MAX. RESULTS: GHPA had more hypomethylation events across all known MAX binding sites. Of binding sites defined using ChIP-seq analysis, 1,551 sites had significantly different methylation patterns between the two cohorts; 432 occurred near promoter regions potentially regulated by MAX, including promoters of TNF and MMP9. Gene ontology analysis suggested enrichment in genes involved in oxygen response, immune system regulation, and cell proliferation. Thirteen MAX binding sites were within coding regions of genes. GHPA demonstrated significantly increased expression of MAX protein compared to NFPA. CONCLUSION: GHPA have significantly different DNA methylation and downstream protein expression levels of MAX compared to NFPA. These differences may influence mechanisms involved with cellular proliferation, tumor invasion and hormonal secretion. Public Library of Science 2023-04-27 /pmc/articles/PMC10138191/ /pubmed/37104368 http://dx.doi.org/10.1371/journal.pone.0284949 Text en © 2023 Tucker et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Tucker, Douglass W.
Pangal, Dhiraj J.
Du, Robin
Gogia, Angad S.
Tafreshi, Ali
Ruzevick, Jacob
Hurth, Kyle T.
Triche, Tim
Micko, Alexander
Carpten, John D.
Shiroishi, Mark S.
Carmichael, John D.
Rhie, Suhn K.
Zada, Gabriel
Validation of Myc-Associated Protein X (MAX) regulation in growth hormone secreting and nonfunctional pituitary adenoma
title Validation of Myc-Associated Protein X (MAX) regulation in growth hormone secreting and nonfunctional pituitary adenoma
title_full Validation of Myc-Associated Protein X (MAX) regulation in growth hormone secreting and nonfunctional pituitary adenoma
title_fullStr Validation of Myc-Associated Protein X (MAX) regulation in growth hormone secreting and nonfunctional pituitary adenoma
title_full_unstemmed Validation of Myc-Associated Protein X (MAX) regulation in growth hormone secreting and nonfunctional pituitary adenoma
title_short Validation of Myc-Associated Protein X (MAX) regulation in growth hormone secreting and nonfunctional pituitary adenoma
title_sort validation of myc-associated protein x (max) regulation in growth hormone secreting and nonfunctional pituitary adenoma
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10138191/
https://www.ncbi.nlm.nih.gov/pubmed/37104368
http://dx.doi.org/10.1371/journal.pone.0284949
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