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PMID: 12660384 Published · ppublish English Evaluation Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

A tyrosine kinase created by fusion of the PDGFRA and FIP1L1 genes as a therapeutic target of imatinib in idiopathic hypereosinophilic syndrome.

The New England journal of medicine ·Vol. 348 ·No. 13 ·2003-03-27 ·Pages 1201-14

Cools J, DeAngelo DJ, Gotlib J, Stover EH, Legare RD, Cortes J, Kutok J, Clark J, Galinsky I, Griffin JD, Cross NC, Tefferi A, Malone J, Alam R, Schrier SL, Schmid J, Rose M, Vandenberghe P, Verhoef G, Boogaerts M, Wlodarska I, Kantarjian H, Marynen P, Coutre SE, Stone R, Gilliland DG

Abstract

Idiopathic hypereosinophilic syndrome involves a prolonged state of eosinophilia associated with organ dysfunction. It is of unknown cause. Recent reports of responses to imatinib in patients with the syndrome suggested that an activated kinase such as ABL, platelet-derived growth factor receptor (PDGFR), or KIT, all of which are inhibited by imatinib, might be the cause. We treated 11 patients with the hypereosinophilic syndrome with imatinib and identified the molecular basis for the response. Nine of the 11 patients treated with imatinib had responses lasting more than three months in which the eosinophil count returned to normal. One such patient had a complex chromosomal abnormality, leading to the identification of a fusion of the Fip1-like 1 (FIP1L1) gene to the PDGFRalpha (PDGFRA) gene generated by an interstitial deletion on chromosome 4q12. FIP1L1-PDGFRalpha is a constitutively activated tyrosine kinase that transforms hematopoietic cells and is inhibited by imatinib (50 percent inhibitory concentration, 3.2 nM). The FIP1L1-PDGFRA fusion gene was subsequently detected in 9 of 16 patients with the syndrome and in 5 of the 9 patients with responses to imatinib that lasted more than three months. Relapse in one patient correlated with the appearance of a T674I mutation in PDGFRA that confers resistance to imatinib. The hypereosinophilic syndrome may result from a novel fusion tyrosine kinase - FIP1L1-PDGFRalpha - that is a consequence of an interstitial chromosomal deletion. The acquisition of a T674I resistance mutation at the time of relapse demonstrates that FIP1L1-PDGFRalpha is the target of imatinib. Our data indicate that the deletion of genetic material may result in gain-of-function fusion proteins.

MeSH Terms
Adult Base Sequence Benzamides Chromosome Deletion Chromosomes, Human, Pair 4/genetics Enzyme Inhibitors/therapeutic use Female Humans Hypereosinophilic Syndrome/drug therapy,genetics Imatinib Mesylate Male Middle Aged Molecular Sequence Data Piperazines/therapeutic use Protein-Tyrosine Kinases/antagonists & inhibitors,genetics Pyrimidines/therapeutic use Recombination, Genetic Remission Induction/methods
Chemicals
Benzamides Enzyme Inhibitors Piperazines Pyrimidines Imatinib Mesylate Protein-Tyrosine Kinases
Authors & Affiliations
26 authors, click to expand affiliations / ORCID
Cools Jan
Brigham and Women's Hospital and Harvard Medical School, Boston, USA
DeAngelo Daniel J
Gotlib Jason
Stover Elizabeth H
Legare Robert D
Cortes Jorges
Kutok Jeffrey
Clark Jennifer
Galinsky Ilene
Griffin James D
Cross Nicholas C P
Tefferi Ayalew
Malone James
Alam Rafeul
Schrier Stanley L
Schmid Janet
Rose Michal
Vandenberghe Peter
Verhoef Gregor
Boogaerts Marc
Wlodarska Iwona
Kantarjian Hagop
Marynen Peter
Coutre Steven E
Stone Richard
Gilliland D Gary
Article Info
Journal
The New England journal of medicine
Abbr.
N Engl J Med
ISSN
1533-4406
Published
2003-03-27
Pages
1201-14
Language
English
Region
United States
NLM ID
0255562
Subset
IM
Grants
NCI NIH HHS · CA66996 · United States
NIDDK NIH HHS · DK50654 · United States
NHLBI NIH HHS · K23HL04409 · United States
NIGMS NIH HHS · T32 GM007753 · United States
NIGMS NIH HHS · T32GMO7753-24 · United States
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