Back to Search Start Over

Dissecting the early steps of MLL induced leukaemogenic transformation using a mouse model of AML

Authors :
Berthold Göttgens
Xiaonan Wang
David J. Adams
Larissa S. Carnevalli
Kim Wong
George S. Vassiliou
Alison Kennedy
George Giotopoulos
Konstantinos Tzelepis
Brian J. P. Huntly
Sarah Kinston
Fernando J Calero-Nieto
Pedro M. Quirós
Silvia Basilico
Wang, Xiaonan [0000-0003-3759-778X]
Kennedy, Alison [0000-0001-6681-3256]
Tzelepis, Konstantinos [0000-0002-4865-7648]
Giotopoulos, George [0000-0003-1390-6592]
Quiros, Pedro M [0000-0002-7793-6291]
Wong, Kim [0000-0002-0984-1477]
Adams, David J [0000-0001-9490-0306]
Carnevalli, Larissa S [0000-0001-7432-0195]
Huntly, Brian JP [0000-0003-0312-161X]
Vassiliou, George S [0000-0003-4337-8022]
Calero-Nieto, Fernando J [0000-0003-3358-8253]
Göttgens, Berthold [0000-0001-6302-5705]
Apollo - University of Cambridge Repository
Huntly, Brian J P [0000-0003-0312-161X]
Quiros, Pedro M. [0000-0002-7793-6291]
Adams, David J. [0000-0001-9490-0306]
Carnevalli, Larissa S. [0000-0001-7432-0195]
Huntly, Brian J. P. [0000-0003-0312-161X]
Vassiliou, George S. [0000-0003-4337-8022]
Calero-Nieto, Fernando J. [0000-0003-3358-8253]
Source :
Nature Communications, Vol 11, Iss 1, Pp 1-15 (2020), Nature Communications
Publication Year :
2020
Publisher :
Springer Science and Business Media LLC, 2020.

Abstract

Leukaemogenic mutations commonly disrupt cellular differentiation and/or enhance proliferation, thus perturbing the regulatory programs that control self-renewal and differentiation of stem and progenitor cells. Translocations involving the Mll1 (Kmt2a) gene generate powerful oncogenic fusion proteins, predominantly affecting infant and paediatric AML and ALL patients. The early stages of leukaemogenic transformation are typically inaccessible from human patients and conventional mouse models. Here, we take advantage of cells conditionally blocked at the multipotent haematopoietic progenitor stage to develop a MLL-r model capturing early cellular and molecular consequences of MLL-ENL expression based on a clear clonal relationship between parental and leukaemic cells. Through a combination of scRNA-seq, ATAC-seq and genome-scale CRISPR-Cas9 screening, we identify pathways and genes likely to drive the early phases of leukaemogenesis. Finally, we demonstrate the broad utility of using matched parental and transformed cells for small molecule inhibitor studies by validating both previously known and other potential therapeutic targets.<br />The oncogene MLL is frequently translocated in leukemia, resulting in oncogenic fusion proteins. Here, the authors report a temporally controlled mouse model of MLL-ENL driven leukemia AND identify therapeutic targets associated with early MLL-ENL driven leukaemogenesis.

Details

Database :
OpenAIRE
Journal :
Nature Communications, Vol 11, Iss 1, Pp 1-15 (2020), Nature Communications
Accession number :
edsair.doi.dedup.....773633fe21e5017797281f2b08b2d3b3
Full Text :
https://doi.org/10.17863/cam.49642