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Molecular basis of ETV6-mediated predisposition to childhood acute lymphoblastic leukemia

Authors :
Takaya Moriyama
Karen R. Rabin
Jeffery M. Klco
Rebekah Baskin-Doerfler
Charles G. Mullighan
Katherine Verbist
Ninad Oak
Jun J. Yang
Kim E. Nichols
Rina Nishii
Keito Hoshitsuki
Mignon L. Loh
Zhenhua Li
Maoxiang Qian
Elizabeth A. Raetz
Allen Eng Juh Yeoh
Mackenzie Bloom
Stephen P. Hunger
Monika L. Metzger
Xujie Zhao
Wentao Yang
Wenjian Yang
Jinghui Zhang
Scott Newman
Julie M. Gastier-Foster
Melissa A. Burns
Gang Wu
Ting-Nien Lin
Ching-Hon Pui
Source :
Blood. 137:364-373
Publication Year :
2021
Publisher :
American Society of Hematology, 2021.

Abstract

There is growing evidence supporting an inherited basis for susceptibility to acute lymphoblastic leukemia (ALL) in children. In particular, we and others reported recurrent germline ETV6 variants linked to ALL risk, which collectively represent a novel leukemia predisposition syndrome. To understand the influence of ETV6 variation on ALL pathogenesis, we comprehensively characterized a cohort of 32 childhood leukemia cases arising from this rare syndrome. Of 34 nonsynonymous germline ETV6 variants in ALL, we identified 22 variants with impaired transcription repressor activity, loss of DNA binding, and altered nuclear localization. Missense variants retained dimerization with wild-type ETV6 with potentially dominant-negative effects. Whole-transcriptome and whole-genome sequencing of this cohort of leukemia cases revealed a profound influence of germline ETV6 variants on leukemia transcriptional landscape, with distinct ALL subsets invoking unique patterns of somatic cooperating mutations. 70% of ALL cases with damaging germline ETV6 variants exhibited hyperdiploid karyotype with characteristic recurrent mutations in NRAS, KRAS, and PTPN11. In contrast, the remaining 30% cases had a diploid leukemia genome and an exceedingly high frequency of somatic copy-number loss of PAX5 and ETV6, with a gene expression pattern that strikingly mirrored that of ALL with somatic ETV6-RUNX1 fusion. Two ETV6 germline variants gave rise to both acute myeloid leukemia and ALL, with lineage-specific genetic lesions in the leukemia genomes. ETV6 variants compromise its tumor suppressor activity in vitro with specific molecular targets identified by assay for transposase-accessible chromatin sequencing profiling. ETV6-mediated ALL predisposition exemplifies the intricate interactions between inherited and acquired genomic variations in leukemia pathogenesis.

Details

ISSN :
15280020 and 00064971
Volume :
137
Database :
OpenAIRE
Journal :
Blood
Accession number :
edsair.doi.dedup.....6a13e78449aecfa40b786a3679941e19
Full Text :
https://doi.org/10.1182/blood.2020006164