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Somatically acquired JAK1 mutations in adult acute lymphoblastic leukemia

Authors :
Stefan N. Constantinescu
Andrea Camera
Robin Foà
Marco Tartaglia
Hélène Cavé
Laurent Knoops
Simone Martinelli
Lorenzo Stella
Francesca Paoloni
Valentina Petrangeli
Valentina Fodale
Simona Tavolaro
Angela Battistini
Cristina Ariola
Giovanni Cazzaniga
Emmanuelle Clappier
Alessandra Fragale
Sabina Chiaretti
Marco Vignetti
Andrea Biondi
Jean-Christophe Renauld
Assunta Tornesello
Bruce D. Gelb
Giovanni Pizzolo
Massimo Sanchez
Monica Messina
Tekla Hornakova
Elisabetta Flex
Flex, E
Petrangeli, V
Stella, L
Chiaretti, S
Hornakova, T
Knoops, L
Ariola, C
Fodale, V
Clappier, E
Paoloni, F
Martinelli, S
Fragale, A
Sanchez, M
Tavolaro, S
Messina, M
Cazzaniga, G
Camera, A
Pizzolo, G
Tornesello, A
Vignetti, M
Battistini, A
Cavé, H
Gelb, B
Renauld, J
Biondi, A
Constantinescu, S
Foà, R
Tartaglia, M
UCL - Cliniques universitaires Saint-Luc
UCL - MD/MIGE - Département de microbiologie, d'immunologie et de génétique
Source :
The Journal of Experimental Medicine, The Journal of Experimental Medicine, Vol. 205, no. 4, p. 751-8 (2008)
Publication Year :
2008
Publisher :
Rockefeller University Press, 2008.

Abstract

Aberrant signal transduction contributes substantially to leukemogenesis. The Janus kinase 1 (JAK1) gene encodes a cytoplasmic tyrosine kinase that noncovalently associates with a variety of cytokine receptors and plays a nonredundant role in lymphoid cell precursor proliferation, survival, and differentiation. We report that somatic mutations in JAK1 occur in individuals with acute lymphoblastic leukemia (ALL). JAK1 mutations were more prevalent among adult subjects with the T cell precursor ALL, where they accounted for 18% of cases, and were associated with advanced age at diagnosis, poor response to therapy, and overall prognosis. All mutations were missense, and some were predicted to destabilize interdomain interactions controlling the activity of the kinase. Three mutations that were studied promoted JAK1 gain of function and conferred interleukin (IL)-3–independent growth in Ba/F3 cells and/or IL-9–independent resistance to dexamethasone-induced apoptosis in T cell lymphoma BW5147 cells. Such effects were associated with variably enhanced activation of multiple downstream signaling pathways. Leukemic cells with mutated JAK1 alleles shared a gene expression signature characterized by transcriptional up-regulation of genes positively controlled by JAK signaling. Our findings implicate dysregulated JAK1 function in ALL, particularly of T cell origin, and point to this kinase as a target for the development of novel antileukemic drugs.

Subjects

Subjects :
Models, Molecular
Somatic cell
DNA Mutational Analysis
animal cell
medicine.disease_cause
T cell lymphoma
Mice
Mutant Protein
Models
JAK1
ALL
MUTATIONS
T lymphocyte
Immunology and Allergy
gene mutation
Settore CHIM/02 - Chimica Fisica
Leukemic
child
Mutation
Tumor
Janus kinase 1
Gene Expression Regulation, Leukemic
Kinase
adult
allele
apoptosis
article
protein domain
Precursor Cell Lymphoblastic Leukemia-Lymphoma
enzyme activity
medicine.anatomical_structure
leukemia cell
priority journal
Signal transduction
signal transduction
mutational analysis
lymphoma cell
alleles
animals
base sequence
cell line
dna mutational analysis
enzymology/genetics/pathology
gene expression profiling
gene expression regulation
genetics
humans
janus kinase 1
leukemic
metabolism
mice
models
molecular
molecular sequence data
mutant proteins
mutation
precursor cell lymphoblastic leukemia-lymphoma
tumor
T cell
prevalence
Molecular Sequence Data
Immunology
dexamethasone
acute lymphoblastic leukemia
protein localization
Biology
leukemogenesis
interleukin 3
Cell Line
Cell Line, Tumor
Acute lymphocytic leukemia
medicine
Animals
Humans
controlled study
human
mouse
Alleles
nonhuman
Base Sequence
Animal
gene interaction
missense mutation
Gene Expression Profiling
genetic transcription
Brief Definitive Report
treatment response
Molecular
Janus Kinase 1
medicine.disease
Molecular biology
cyclosporin A
gene function
Gene Expression Regulation
interleukin 9
adolescent
gene expression
Adult Acute Lymphoblastic Leukemia
Brief Definitive Reports
Mutant Proteins
prognosis
molecular model
upregulation

Details

ISSN :
15409538 and 00221007
Volume :
205
Database :
OpenAIRE
Journal :
Journal of Experimental Medicine
Accession number :
edsair.doi.dedup.....c30bb32405700fe9f55d3fc0982ba402