4.4 Article

Predisposing germline mutations in high hyperdiploid acute lymphoblastic leukemia in children

期刊

GENES CHROMOSOMES & CANCER
卷 58, 期 10, 页码 723-730

出版社

WILEY
DOI: 10.1002/gcc.22765

关键词

acute lymphoblastic leukemia; ALL; FLT3; GAB2; germline mutations; high hyperdiploidy

资金

  1. Alex's Lemonade Stand Foundation for Childhood Cancer
  2. Canadian Institutes of Health Research [MOP-142374, PJT-152995]
  3. Environmental Protection Agency [RD83451101]
  4. Fonds de Recherche du Quebec -Sante
  5. National Cancer Institute [R01 CA155461, R01 CA175737]
  6. National Institute of Environmental Health Sciences [P01 ES018172, R01 ES009137, R24 ES028524]
  7. UCSF Helen Diller Family Comprehensive Cancer Center

向作者/读者索取更多资源

High hyperdiploidy (HD) is the most common cytogenetic subtype of childhood acute lymphoblastic leukemia (ALL), and a higher incidence of HD has been reported in ALL patients with congenital cancer syndromes. We assessed the frequency of predisposing germline mutations in 57 HD-ALL patients from the California Childhood Leukemia Study via targeted sequencing of cancer-relevant genes. Three out of 57 patients (5.3%) harbored confirmed germline mutations that were likely causal, in NBN, ETV6, and FLT3, with an additional six patients (10.5%) harboring putative predisposing mutations that were rare in unselected individuals (<0.01% allele frequency in the Exome Aggregation Consortium, ExAC) and predicted functional (scaled CADD score >= 20) in known or potential ALL predisposition genes (SH2B3, CREBBP, PMS2, MLL, ABL1, and MYH9). Three additional patients carried rare and predicted damaging germline mutations in GAB2, a known activator of the ERK/MAPK and PI3K/AKT pathways and binding partner of PTPN11-encoded SHP2. The frequency of rare and predicted functional germline GAB2 mutations was significantly higher in our patients (2.6%) than in ExAC (0.28%, P = 4.4 x 10(-3)), an observation that was replicated in ALL patients from the TARGET project (P = .034). We cloned patient GAB2 mutations and expressed mutant proteins in HEK293 cells and found that frameshift mutation P621fs led to reduced SHP2 binding and ERK1/2 phosphorylation but significantly increased AKT phosphorylation, suggesting possible RAS-independent leukemogenic effects. Our results support a significant contribution of rare, high penetrance germline mutations to HD-ALL etiology, and pinpoint GAB2 as a putative novel ALL predisposition gene.

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