Back to Search Start Over

Germline RUNX1 variation and predisposition to childhood acute lymphoblastic leukemia

Authors :
Chunliang Li
Ching-Hon Pui
Julie M. Gastier-Foster
Xujie Zhao
Maoxiang Qian
Mignon L. Loh
Mary V. Relling
Takaomi Sanda
Kimberly P. Dunsmore
Chimene Kesserwan
William L. Carroll
Karen R. Rabin
Stuart S. Winter
Yizhen Li
Kim E. Nichols
William E. Evans
Wentao Yang
Meenakshi Devidas
Jun J. Yang
Charles G. Mullighan
Paul P. Liu
Ranran Zhang
Elizabeth A. Raetz
Wenjian Yang
Stephen P. Hunger
Colton Smith
David T. Teachey
Source :
J Clin Invest
Publication Year :
2021
Publisher :
American Society for Clinical Investigation, 2021.

Abstract

Genetic alterations in the RUNX1 gene are associated with benign and malignant blood disorders, particularly of megakaryocyte and myeloid lineages. The role of RUNX1 in acute lymphoblastic leukemia (ALL) is less clear, particularly in terms of how germline genetic variation influences the predisposition to this type of leukemia. Sequencing DNA of 4836 children with B cell ALL (B-ALL) and 1354 with T cell ALL (T-ALL), we identified 31 and 18 germline RUNX1 variants, respectively. RUNX1 variants in B-ALL consistently showed minimal damaging effects. In contrast, 6 T-ALL–related variants resulted in drastic loss of RUNX1 activity as a transcription activator in vitro. Ectopic expression of dominant-negative RUNX1 variants in human CD34(+) cells repressed differentiation into erythroid cells, megakaryocytes, and T cells, while promoting myeloid cell development. Chromatin immunoprecipitation sequencing of T-ALL models showed distinctive patterns of RUNX1 binding by variant proteins. Further whole-genome sequencing identified the JAK3 mutation as the most frequent somatic genomic abnormality in T-ALL with germline RUNX1 variants. Cointroduction of RUNX1 variant and JAK3 mutation in hematopoietic stem and progenitor cells in mice gave rise to T-ALL with the early T cell precursor phenotype. Taken together, these results indicate that RUNX1 is an important predisposition gene for T-ALL and point to biology of RUNX1-mediated leukemogenesis in the lymphoid lineages.

Details

Language :
English
Database :
OpenAIRE
Journal :
J Clin Invest
Accession number :
edsair.doi.dedup.....3b3631864106f41bd408941c5acb62c7