Cargando…

Epigenetic changes in human model KMT2A leukemias highlight early events during leukemogenesis

Chromosomal translocations involving the KMT2A gene are among the most common genetic alterations found in pediatric acute myeloid leukemias although the molecular mechanisms that initiate the disease remain incompletely defined. To elucidate these initiating events we used a human model system of a...

Descripción completa

Detalles Bibliográficos
Autores principales: Milan, Thomas, Celton, Magalie, Lagacé, Karine, Roques, Élodie, Safa-Tahar-Henni, Safia, Bresson, Eva, Bergeron, Anne, Hebert, Josée, Meshinchi, Soheil, Cellot, Sonia, Barabé, Frédéric, Wilhelm, Brian T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Fondazione Ferrata Storti 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8719083/
https://www.ncbi.nlm.nih.gov/pubmed/33375773
http://dx.doi.org/10.3324/haematol.2020.271619
_version_ 1784624863971901440
author Milan, Thomas
Celton, Magalie
Lagacé, Karine
Roques, Élodie
Safa-Tahar-Henni, Safia
Bresson, Eva
Bergeron, Anne
Hebert, Josée
Meshinchi, Soheil
Cellot, Sonia
Barabé, Frédéric
Wilhelm, Brian T.
author_facet Milan, Thomas
Celton, Magalie
Lagacé, Karine
Roques, Élodie
Safa-Tahar-Henni, Safia
Bresson, Eva
Bergeron, Anne
Hebert, Josée
Meshinchi, Soheil
Cellot, Sonia
Barabé, Frédéric
Wilhelm, Brian T.
author_sort Milan, Thomas
collection PubMed
description Chromosomal translocations involving the KMT2A gene are among the most common genetic alterations found in pediatric acute myeloid leukemias although the molecular mechanisms that initiate the disease remain incompletely defined. To elucidate these initiating events we used a human model system of acute myeloid leukemia driven by the KMT2A-MLLT3 (KM3) fusion. More specifically, we investigated changes in DNA methylation, histone modifications, and chromatin accessibility at each stage of our model system and correlated these with expression changes. We observed the development of a pronounced hypomethyl - ation phenotype in the early stages of leukemic transformation after KM3 addition along with loss of expression of stem-cell-associated genes and skewed expression of other genes, such as S100A8/9, implicated in leukemogenesis. In addition, early increases in the expression of the lysine demethylase KDM4B was functionally linked to these expression changes as well as other key transcription factors. Remarkably, our ATAC-sequencing data showed that there were relatively few leukemia-specific changes and that the vast majority corresponded to open chromatin regions and transcription factor clusters previously observed in other cell types. Integration of the gene expression and epigenetic changes revealed that the adenylate cyclase gene ADCY9 is an essential gene in KM3-acute myeloid leukemia, and suggested the potential for autocrine signaling through the chemokine receptor CCR1 and CCL23 ligand. Collectively, our results suggest that KM3 induces subtle changes in the epigenome while co-opting the normal transcriptional machinery to drive leukemogenesis.
format Online
Article
Text
id pubmed-8719083
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Fondazione Ferrata Storti
record_format MEDLINE/PubMed
spelling pubmed-87190832022-01-14 Epigenetic changes in human model KMT2A leukemias highlight early events during leukemogenesis Milan, Thomas Celton, Magalie Lagacé, Karine Roques, Élodie Safa-Tahar-Henni, Safia Bresson, Eva Bergeron, Anne Hebert, Josée Meshinchi, Soheil Cellot, Sonia Barabé, Frédéric Wilhelm, Brian T. Haematologica Article Chromosomal translocations involving the KMT2A gene are among the most common genetic alterations found in pediatric acute myeloid leukemias although the molecular mechanisms that initiate the disease remain incompletely defined. To elucidate these initiating events we used a human model system of acute myeloid leukemia driven by the KMT2A-MLLT3 (KM3) fusion. More specifically, we investigated changes in DNA methylation, histone modifications, and chromatin accessibility at each stage of our model system and correlated these with expression changes. We observed the development of a pronounced hypomethyl - ation phenotype in the early stages of leukemic transformation after KM3 addition along with loss of expression of stem-cell-associated genes and skewed expression of other genes, such as S100A8/9, implicated in leukemogenesis. In addition, early increases in the expression of the lysine demethylase KDM4B was functionally linked to these expression changes as well as other key transcription factors. Remarkably, our ATAC-sequencing data showed that there were relatively few leukemia-specific changes and that the vast majority corresponded to open chromatin regions and transcription factor clusters previously observed in other cell types. Integration of the gene expression and epigenetic changes revealed that the adenylate cyclase gene ADCY9 is an essential gene in KM3-acute myeloid leukemia, and suggested the potential for autocrine signaling through the chemokine receptor CCR1 and CCL23 ligand. Collectively, our results suggest that KM3 induces subtle changes in the epigenome while co-opting the normal transcriptional machinery to drive leukemogenesis. Fondazione Ferrata Storti 2020-12-30 /pmc/articles/PMC8719083/ /pubmed/33375773 http://dx.doi.org/10.3324/haematol.2020.271619 Text en Copyright© 2022 Ferrata Storti Foundation https://creativecommons.org/licenses/by-nc/4.0/This article is distributed under the terms of the Creative Commons Attribution Noncommercial License (by-nc 4.0) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Article
Milan, Thomas
Celton, Magalie
Lagacé, Karine
Roques, Élodie
Safa-Tahar-Henni, Safia
Bresson, Eva
Bergeron, Anne
Hebert, Josée
Meshinchi, Soheil
Cellot, Sonia
Barabé, Frédéric
Wilhelm, Brian T.
Epigenetic changes in human model KMT2A leukemias highlight early events during leukemogenesis
title Epigenetic changes in human model KMT2A leukemias highlight early events during leukemogenesis
title_full Epigenetic changes in human model KMT2A leukemias highlight early events during leukemogenesis
title_fullStr Epigenetic changes in human model KMT2A leukemias highlight early events during leukemogenesis
title_full_unstemmed Epigenetic changes in human model KMT2A leukemias highlight early events during leukemogenesis
title_short Epigenetic changes in human model KMT2A leukemias highlight early events during leukemogenesis
title_sort epigenetic changes in human model kmt2a leukemias highlight early events during leukemogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8719083/
https://www.ncbi.nlm.nih.gov/pubmed/33375773
http://dx.doi.org/10.3324/haematol.2020.271619
work_keys_str_mv AT milanthomas epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT celtonmagalie epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT lagacekarine epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT roqueselodie epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT safataharhennisafia epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT bressoneva epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT bergeronanne epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT hebertjosee epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT meshinchisoheil epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT cellotsonia epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT barabefrederic epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis
AT wilhelmbriant epigeneticchangesinhumanmodelkmt2aleukemiashighlightearlyeventsduringleukemogenesis