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Published on: September 20, 2016
UBTF-internal tandem duplication as a novel poor prognostic factor in pediatric acute myeloid leukemia
Taeko Kaburagi1,2, Norio Shiba3, Genki Yamato1,2
1Department of Hematology/Oncology, Gunma Children's Medical Center, Gunma, Japan.
Insights
A new genetic factor, upstream binding transcription factor internal tandem duplication (UBTF-ITD), was found in pediatric acute myeloid leukemia (AML). UBTF-ITD is associated with a poorer prognosis in pediatric AML patients, highlighting its potential as a novel prognostic marker.
Area of Science:
- Hematology
- Oncology
- Genetics
Background:
- Pediatric acute myeloid leukemia (AML) prognosis has improved, but 30-40% of patients still relapse or die.
- Identifying novel genetic factors is crucial for improving pediatric AML outcomes.
Purpose of the Study:
- To investigate novel genetic factors in pediatric AML.
- To determine the prognostic significance of upstream binding transcription factor internal tandem duplication (UBTF-ITD) in pediatric AML.
Main Methods:
- Screening of 503 Japanese pediatric de novo AML patients for UBTF-ITD.
- Analysis of UBTF-ITD co-occurrence with other genetic alterations (trisomy 8, FLT3-ITD, WT1 mutation, PRDM16 expression).
- Survival analysis using the AML-05 cohort data.
Main Results:
- UBTF-ITD was detected in 1.2% (6/503) of pediatric AML patients, exclusively in exon 13.
- UBTF-ITD was not found in adult AML or other cancer cell lines.
- Patients with UBTF-ITD showed significantly worse 3-year event-free survival (20% vs. 55%) and overall survival (40% vs. 74%).
- UBTF-ITD frequently co-occurred with trisomy 8, FLT3-ITD, WT1 mutation, and high PRDM16 expression.
Conclusions:
- UBTF-ITD is a novel genetic factor identified in pediatric AML.
- UBTF-ITD is associated with a significantly poorer prognosis in pediatric AML patients.
- UBTF-ITD may serve as a novel and significant prognostic marker for pediatric AML.
Abstract:
The prognosis of pediatric acute myeloid leukemia (AML) has improved via stratification therapy. However, relapse or death occurs in 30%-40% of cases. Novel genetic factors for pediatric AML need to be elucidated to improve prognosis. We detected recurrent internal tandem duplication in upstream binding transcription factor (UBTF-ITD) in 1.2% (6/503) of Japanese pediatric patients with de novo AML. No UBTF-ITD was detected in 175 adult patients with AML or in 65 cell lines that included 15 AML, 39 acute lymphoblastic leukemia, five chronic myeloid leukemia, and six neuroblastoma cell lines. All UBTF-ITDs were found in exon 13 and shared a duplicated region. UBTF-ITD was more frequently detected in patients with trisomy 8, FLT3-ITD, WT1 mutation, and/or high PRDM16 expression (trisomy 8, 3/6; FLT3-ITD, 5/6; WT1 mutation, 2/6; and high PRDM16 expression, 6/6). Gene expression patterns of patients with UBTF-ITD were similar to those of patients with NUP98::NSD1 or FUS::ERG. Survival analysis of the AML-05 cohort revealed that patients with UBTF-ITD had worse outcomes than those without UBTF-ITD (3-year event-free survival, 20% vs. 55%; 3-year overall survival, 40% vs. 74%). Moreover, among the 27 patients with trisomy 8, all three patients with UBTF -ITD had a poor prognosis resulting in early events (relapse or non-complete remission) within 1 year. Our findings suggest that UBTF-ITD may be a novel and significant prognostic factor for pediatric patients with AML.
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