High-resolution genomic profiling of childhood T-ALL reveals frequent copy-number alterations affecting the TGF-β and PI3K-AKT pathways and deletions at 6q15-16.1 as a genomic marker for unfavorable early treatment response

Author:

Remke Marc1,Pfister Stefan12,Kox Corinne2,Toedt Grischa1,Becker Natalia1,Benner Axel3,Werft Wiebke3,Breit Stephen2,Liu Shuangyou2,Engel Felix1,Wittmann Andrea1,Zimmermann Martin4,Stanulla Martin5,Schrappe Martin5,Ludwig Wolf-Dieter6,Bartram Claus R.7,Radlwimmer Bernhard1,Muckenthaler Martina U.2,Lichter Peter1,Kulozik Andreas E.2

Affiliation:

1. German Cancer Research Center (DKFZ), Division Molecular Genetics, Heidelberg;

2. Department of Pediatric Oncology, Hematology and Immunology, University of Heidelberg, Heidelberg;

3. DKFZ, Division Biostatistics, Heidelberg;

4. Department of Pediatric Hematology and Oncology, Hannover Medical School, Hannover;

5. Department of Pediatrics, University Medical Center Schleswig-Holstein, Campus Kiel, Kiel;

6. HELIOS Klinikum Berlin, Charité-University Medical School Berlin, Robert-Rössle-Clinic, Campus-Buch, Berlin; and

7. Institute of Human Genetics, University of Heidelberg, Heidelberg, Germany

Abstract

Abstract Precursor T-cell acute lymphoblastic leukemia (T-ALL) in children represents a clinical challenge, because relapses are usually fatal. It is thus necessary to identify high-risk patients as early as possible to effectively individualize treatment. We aimed to define novel molecular risk markers in T-ALL and performed array-based comparative genomic hybridization (array-CGH) and expression analyses in 73 patients. We show that DNA copy-number changes are common in T-ALL and affect 70 of 73 (96%) patients. Notably, genomic imbalances predicted to down-regulate the TGF-β or up-regulate the PI3K-AKT pathways are identified in 25 of 73 (34%) and 21 of 73 (29%) patients, suggesting that these pathways play key roles in T-ALL leukemogenesis. Furthermore, we identified a deletion at 6q15-16.1 in 9 of 73 (12%) of the patients, which predicts poor early treatment response. This deletion includes the CASP8AP2 gene, whose expression is shown to be down-regulated. The interaction of CASP8AP2 with CASP8 plays a crucial role in apoptotic regulation, suggesting a functional link between the clinical effect of the deletion and the molecular mode of action. The data presented here implicate the TGF-β and PI3K-AKT pathways in T-ALL leukemogenesis and identify a subgroup of patients with CASP8AP2 deletions and poor early treatment response.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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