GEenetic landscape of hypodiploid acute lymphoblastic leukemia
Hypodiploid acute lymphoblastic leukemia (ALL) is an aggressive leukemia characterized by aneuploidy and poor outcome. The genetic basis of hypodiploid ALL is unknown. Here, using complementary genome-wide profiling approaches, we show that hypodiploid ALL comprises two subtypes that differ in the severity of aneuploidy, transcriptional profile and submicroscopic genetic alterations. Near haploid cases with 24-31 chromosomes frequently harbor alterations targeting receptor tyrosine kinase- and Ras signaling (71%) and IKZF3 (AIOLOS; 13%). In contrast, low hypodiploid ALL cases with 32-39 chromosomes are characterized by TP53 alterations, almost half of which are present in non-tumor cells, and have alterations of IKZF2 (HELIOS; 53%) and RB1 (41%). Both near haploid and low hypodiploid tumors exhibit activation of Ras and PI3K signaling pathways, and are sensitive to PI3K inhibition, indicating that these drugs should be explored as a new therapeutic strategy for this frequently lethal form of leukemia.
- Type: Whole Genome Sequencing
- Archiver: European Genome-phenome Archive (EGA)
Click on a Dataset ID in the table below to learn more, and to find out who to contact about access to these data
| Dataset ID | Description | Technology | Samples |
|---|---|---|---|
| EGAD00001000260 | Illumina HiSeq 2000 | 40 | |
| EGAD00001001432 | Illumina HiSeq 2000 | 1337 | |
| EGAD00001001433 | Illumina HiSeq 2000 | 906 |
| Publications | Citations |
|---|---|
|
Assessing telomeric DNA content in pediatric cancers using whole-genome sequencing data.
Genome Biol 13: 2012 R113 |
29 |
|
Germline ETV6 Mutations Confer Susceptibility to Acute Lymphoblastic Leukemia and Thrombocytopenia.
PLoS Genet 11: 2015 e1005262 |
109 |
|
The landscape of coding RNA editing events in pediatric cancer.
BMC Cancer 21: 2021 1233 |
10 |
|
Comprehensive analysis of mutational signatures reveals distinct patterns and molecular processes across 27 pediatric cancers.
Nat Cancer 4: 2023 276-289 |
66 |
|
A pathway-informed mutual exclusivity framework to detect genetic interactions in pediatric cancer.
BMC Med Genomics 19: 2025 14 |
0 |
