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A Method for Screening and Validation of Resistant Mutations Against Kinase Inhibitors
Published on: December 7, 2014
Mutations of JAK2 in acute lymphoblastic leukaemias associated with Down's syndrome
Dani Bercovich1, Ithamar Ganmore, Linda M Scott
1Human Molecular Genetics and Pharmacogenetics Laboratory, Migal-Galilee Biotechnology Centre, Kiryat Shmona, and Tel-Hai Academic College, Israel.
Insights
Somatic mutations in JAK2 (Janus kinase 2) were found in 18% of children with Down's syndrome and acute lymphoblastic leukaemia. These R683 JAK2 mutations define a unique leukaemia subgroup, suggesting JAK2 inhibitors as a potential treatment.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Children with Down's syndrome (DS) have a significantly higher risk of acute leukaemias, specifically acute megakaryoblastic leukaemia (AMKL) and acute lymphoblastic leukaemia (ALL).
- AMKL in DS is often linked to GATA1 mutations, while the JAK/STAT pathway is implicated in other blood cancers.
- This study investigated the role of JAK2 mutations in DS-associated ALL.
Purpose of the Study:
- To determine if JAK2 mutations are a common molecular event in acute lymphoblastic leukaemia (ALL) associated with Down's syndrome (DS).
- To characterize the functional consequences of identified JAK2 mutations.
- To explore potential therapeutic targets for DS-ALL.
Main Methods:
- JAK2 DNA mutational analysis was performed on bone marrow samples from 88 patients with DS-ALL and 216 patients with other leukaemias or essential thrombocythaemia.
- Functional effects of identified mutations were assessed in mouse hematopoietic progenitor cells and BaF3 cells.
- JAK2 pseudokinase domain modeling was conducted.
Main Results:
- Somatic JAK2 mutations were detected in 16% of DS-ALL patients, with all mutations affecting the conserved R683 residue.
- Patients with JAK2 mutations were significantly younger at diagnosis.
- These mutations led to immortalization of hematopoietic progenitor cells, constitutive Jak/Stat activation, and cytokine-independent growth, which responded to JAK inhibitor I.
Conclusions:
- Somatically acquired R683 JAK2 mutations represent a distinct subtype of ALL uniquely associated with trisomy 21 (Down's syndrome).
- A genotype-phenotype correlation exists between JAK2 pseudokinase domain mutations and lymphoid or myeloid neoplasms.
- Targeting JAK2 with inhibitors may offer a promising therapeutic strategy for this specific leukaemia subgroup.
Background:
Children with Down's syndrome have a greatly increased risk of acute megakaryoblastic and acute lymphoblastic leukaemias. Acute megakaryoblastic leukaemia in Down's syndrome is characterised by a somatic mutation in GATA1. Constitutive activation of the JAK/STAT (Janus kinase and signal transducer and activator of transcription) pathway occurs in several haematopoietic malignant diseases. We tested the hypothesis that mutations in JAK2 might be a common molecular event in acute lymphoblastic leukaemia associated with Down's syndrome.
Methods:
JAK2 DNA mutational analysis was done on diagnostic bone marrow samples obtained from 88 patients with Down's syndrome-associated acute lymphoblastic leukaemia; and 216 patients with sporadic acute lymphoblastic leukaemia, Down's syndrome-associated acute megakaryoblastic leukaemia, and essential thrombocythaemia. Functional consequences of identified mutations were studied in mouse haematopoietic progenitor cells.
Findings:
Somatically acquired JAK2 mutations were identified in 16 (18%) patients with Down's syndrome-associated acute lymphoblastic leukaemia. The only patient with non-Down's syndrome-associated leukaemia but with a JAK2 mutation had an isochromosome 21q. Children with a JAK2 mutation were younger (mean [SE] age 4.5 years [0.86] vs 8.6 years [0.59], p<0.0001) at diagnosis. Five mutant alleles were identified, each affecting a highly conserved arginine residue (R683). These mutations immortalised primary mouse haematopoietic progenitor cells in vitro, and caused constitutive Jak/Stat activation and cytokine-independent growth of BaF3 cells, which was sensitive to pharmacological inhibition with JAK inhibitor I. In modelling studies of the JAK2 pseudokinase domain, R683 was situated in an exposed conserved region separated from the one implicated in myeloproliferative disorders.
Interpretation:
A specific genotype-phenotype association exists between the type of somatic mutation within the JAK2 pseudokinase domain and the development of B-lymphoid or myeloid neoplasms. Somatically acquired R683 JAK2 mutations define a distinct acute lymphoblastic leukaemia subgroup that is uniquely associated with trisomy 21. JAK2 inhibitors could be useful for treatment of this leukaemia.
Funding:
Israel Trade Ministry, Israel Science Ministry, Jewish National Fund UK, Sam Waxman Cancer Research Foundation, Israel Science Foundation, Israel Cancer Association, Curtis Katz, Constantiner Institute for Molecular Genetics, German-Israel Foundation, and European Commission FP6 Integrated Project EUROHEAR.
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