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Response and resistance to MEK inhibition in leukaemias initiated by hyperactive Ras

Authors :
Lauchle, Jennifer O.
Kim, Doris
Le, Doan T.
Akagi, Keiko
Crone, Michael
Krisman, Kimberly
Warner, Kegan
Bonifas, Jeannette M.
Li, Qing
Coakley, Kristen M.
Diaz-Flores, Ernesto
Gorman, Matthew
Przybranowski, Sally
Tran, Mary
Kogan, Scott C.
Roose, Jeroen P.
Copeland, Neal G.
Jenkins, Nancy A.
Parada, Luis
Wolff, Linda
Sebolt-Leopold, Judith
Shannon, Kevin
Source :
Nature. September 17, 2009, Vol. 461 Issue 7262, p411, 5 p.
Publication Year :
2009

Abstract

The cascade comprising Raf, mitogen-activated protein kinase kinase (MEK) and extracellular signal-regulated kinase (ERK) is a therapeutic target in human cancers with deregulated Ras signalling, which includes tumours that have inactivated the Nf1 tumour suppressor (1,2). Nf1 encodes neurofibromin, a GTPaseactivating protein that terminates Ras signalling by stimulating hydrolysis of Ras-GTP. We compared the effects of inhibitors of MEK in a myeloproliferative disorder (MPD) initiated by inactivating Nf1 in mouse bone marrow and in acute myeloid leukaemias (AMLs) in which cooperating mutations were induced by retroviral insertional mutagenesis. Here we show that MEK inhibitors are ineffective in MPD, but induce objective regression of many Nf1-deficient AMLs. Drug resistance developed because of outgrowth of AML clones that were present before treatment. We cloned clone-specific retroviral integrations to identify candidate resistance genes including Rasgrp1, Rasgrp4 and Mapk14, which encodes p38a. Functional analysis implicated increased RasGRP1 levels and reduced p38 kinase activity in resistance to MEK inhibitors. This approach represents a robust strategy for identifying genes and pathways that modulate how primary cancer cells respond to targeted therapeutics and for probing mechanisms of de novo and acquired resistance.<br />Aberrant Ras signalling contributes to the pathogenesis of myeloid malignancies and can result from acquired RAS mutations or from alternative genetic mechanisms that include FLT3 internal tandem duplications, the BCR-ABL [...]

Details

Language :
English
ISSN :
00280836
Volume :
461
Issue :
7262
Database :
Gale General OneFile
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
edsgcl.208694900