Mutant H3 histones drive human pre-leukemic hematopoietic stem cell expansion and promote leukemic aggressiveness

The role of histone mutations in leukemogenesis remains largely unexplored. In this study of AML, the authors show that histone mutations are early events that drive a more aggressive phenotype.

Bibliographic Details
Main Authors: Meaghan Boileau, Margret Shirinian, Tenzin Gayden, Ashot S. Harutyunyan, Carol C. L. Chen, Leonie G. Mikael, Heather M. Duncan, Andrea L. Neumann, Patricia Arreba-Tutusaus, Nicolas De Jay, Michele Zeinieh, Katya Rossokhata, Yelu Zhang, Hamid Nikbakht, Carine Mouawad, Radwan Massoud, Felice Frey, Rihab Nasr, Jean El Cheikh, Marwan El Sabban, Claudia L. Kleinman, Rami Mahfouz, Mark D. Minden, Nada Jabado, Ali Bazarbachi, Kolja Eppert
Format: Article
Language:English
Published: Nature Publishing Group 2019-06-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-019-10705-z
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spelling doaj-c65cab72003240578c7b04815c5c955e2021-05-11T12:36:38ZengNature Publishing GroupNature Communications2041-17232019-06-0110111210.1038/s41467-019-10705-zMutant H3 histones drive human pre-leukemic hematopoietic stem cell expansion and promote leukemic aggressivenessMeaghan Boileau0Margret Shirinian1Tenzin Gayden2Ashot S. Harutyunyan3Carol C. L. Chen4Leonie G. Mikael5Heather M. Duncan6Andrea L. Neumann7Patricia Arreba-Tutusaus8Nicolas De Jay9Michele Zeinieh10Katya Rossokhata11Yelu Zhang12Hamid Nikbakht13Carine Mouawad14Radwan Massoud15Felice Frey16Rihab Nasr17Jean El Cheikh18Marwan El Sabban19Claudia L. Kleinman20Rami Mahfouz21Mark D. Minden22Nada Jabado23Ali Bazarbachi24Kolja Eppert25Division of Experimental Medicine, McGill University and McGill University Heath Centre Research InstituteDepartment of Experimental Pathology, Immunology, and Microbiology, American University of BeirutDepartment of Human Genetics, McGill UniversityDepartment of Human Genetics, McGill UniversityDepartment of Human Genetics, McGill UniversityDepartment of Pediatrics, McGill University and McGill University Heath Centre Research InstituteDivision of Experimental Medicine, McGill University and McGill University Heath Centre Research InstituteResearch Institute of the McGill University Health Centre and McGill UniversityResearch Institute of the McGill University Health Centre and McGill UniversityDepartment of Human Genetics, McGill UniversityDepartment of Human Genetics, McGill UniversityDepartment of Human Genetics, McGill UniversityResearch Institute of the McGill University Health Centre and McGill UniversityDepartment of Human Genetics, McGill UniversityDepartment of Experimental Pathology, Immunology, and Microbiology, American University of BeirutDepartment of Internal Medicine, American University of BeirutDepartment of Experimental Pathology, Immunology, and Microbiology, American University of BeirutDepartment of Anatomy, Cell Biology and Physiological Sciences, American University of BeirutDepartment of Internal Medicine, American University of BeirutDepartment of Anatomy, Cell Biology and Physiological Sciences, American University of BeirutDepartment of Human Genetics, McGill UniversityDepartment of Pathology and Laboratory Medicine, American University of BeirutPrincess Margaret Cancer Centre, University Health Network, University of TorontoDepartment of Human Genetics, McGill UniversityDepartment of Internal Medicine, American University of BeirutDepartment of Pediatrics, McGill University and McGill University Heath Centre Research InstituteThe role of histone mutations in leukemogenesis remains largely unexplored. In this study of AML, the authors show that histone mutations are early events that drive a more aggressive phenotype.https://doi.org/10.1038/s41467-019-10705-z
collection DOAJ
language English
format Article
sources DOAJ
author Meaghan Boileau
Margret Shirinian
Tenzin Gayden
Ashot S. Harutyunyan
Carol C. L. Chen
Leonie G. Mikael
Heather M. Duncan
Andrea L. Neumann
Patricia Arreba-Tutusaus
Nicolas De Jay
Michele Zeinieh
Katya Rossokhata
Yelu Zhang
Hamid Nikbakht
Carine Mouawad
Radwan Massoud
Felice Frey
Rihab Nasr
Jean El Cheikh
Marwan El Sabban
Claudia L. Kleinman
Rami Mahfouz
Mark D. Minden
Nada Jabado
Ali Bazarbachi
Kolja Eppert
spellingShingle Meaghan Boileau
Margret Shirinian
Tenzin Gayden
Ashot S. Harutyunyan
Carol C. L. Chen
Leonie G. Mikael
Heather M. Duncan
Andrea L. Neumann
Patricia Arreba-Tutusaus
Nicolas De Jay
Michele Zeinieh
Katya Rossokhata
Yelu Zhang
Hamid Nikbakht
Carine Mouawad
Radwan Massoud
Felice Frey
Rihab Nasr
Jean El Cheikh
Marwan El Sabban
Claudia L. Kleinman
Rami Mahfouz
Mark D. Minden
Nada Jabado
Ali Bazarbachi
Kolja Eppert
Mutant H3 histones drive human pre-leukemic hematopoietic stem cell expansion and promote leukemic aggressiveness
Nature Communications
author_facet Meaghan Boileau
Margret Shirinian
Tenzin Gayden
Ashot S. Harutyunyan
Carol C. L. Chen
Leonie G. Mikael
Heather M. Duncan
Andrea L. Neumann
Patricia Arreba-Tutusaus
Nicolas De Jay
Michele Zeinieh
Katya Rossokhata
Yelu Zhang
Hamid Nikbakht
Carine Mouawad
Radwan Massoud
Felice Frey
Rihab Nasr
Jean El Cheikh
Marwan El Sabban
Claudia L. Kleinman
Rami Mahfouz
Mark D. Minden
Nada Jabado
Ali Bazarbachi
Kolja Eppert
author_sort Meaghan Boileau
title Mutant H3 histones drive human pre-leukemic hematopoietic stem cell expansion and promote leukemic aggressiveness
title_short Mutant H3 histones drive human pre-leukemic hematopoietic stem cell expansion and promote leukemic aggressiveness
title_full Mutant H3 histones drive human pre-leukemic hematopoietic stem cell expansion and promote leukemic aggressiveness
title_fullStr Mutant H3 histones drive human pre-leukemic hematopoietic stem cell expansion and promote leukemic aggressiveness
title_full_unstemmed Mutant H3 histones drive human pre-leukemic hematopoietic stem cell expansion and promote leukemic aggressiveness
title_sort mutant h3 histones drive human pre-leukemic hematopoietic stem cell expansion and promote leukemic aggressiveness
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2019-06-01
description The role of histone mutations in leukemogenesis remains largely unexplored. In this study of AML, the authors show that histone mutations are early events that drive a more aggressive phenotype.
url https://doi.org/10.1038/s41467-019-10705-z
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