| Literature DB >> 32882024 |
Shawn H R Lee1,2,3, Maoxiang Qian4, Wentao Yang1, Jonathan D Diedrich1, Elizabeth Raetz5, Wenjian Yang1, Qian Dong1, Meenakshi Devidas6,7, Deqing Pei8, Allen Yeoh2,3, Cheng Cheng8, Ching-Hon Pui9, William E Evans1, Charles G Mullighan10, Stephen P Hunger11, Daniel Savic1, Mary V Relling1, Mignon L Loh12, Jun J Yang1.
Abstract
Acute lymphoblastic leukemia (ALL) is the most common cancer in children. TCF3-PBX1 fusion defines a common molecular subtype of ALL with unique clinical features, but the molecular basis of its inherited susceptibility is unknown. In a genome-wide association study of 1494 ALL cases and 2057 non-ALL controls, we identified a germline risk locus located in an intergenic region between BCL11A and PAPOLG: rs2665658, P = 1.88 × 10-8 for TCF3-PBX1 ALL vs non-ALL, and P = 1.70 × 10-8 for TCF3-PBX1 ALL vs other-ALL. The lead variant was validated in a replication cohort, and conditional analyses pointed to a single causal variant with subtype-specific effect. The risk variant is located in a regulatory DNA element uniquely activated in ALL cells with the TCF3-PBX1 fusion and may distally modulate the transcription of the adjacent gene REL. Our results expand the understanding of subtype-specific ALL susceptibility and highlight plausible interplay between germline variants and somatic genomic abnormalities in ALL pathogenesis.Entities:
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Year: 2021 PMID: 32882024 PMCID: PMC8487647 DOI: 10.1093/jnci/djaa133
Source DB: PubMed Journal: J Natl Cancer Inst ISSN: 0027-8874 Impact factor: 11.816