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Convergent mutations and kinase fusions lead to oncogenic STAT3 activation in anaplastic large cell lymphoma.


ABSTRACT: A systematic characterization of the genetic alterations driving ALCLs has not been performed. By integrating massive sequencing strategies, we provide a comprehensive characterization of driver genetic alterations (somatic point mutations, copy number alterations, and gene fusions) in ALK(-) ALCLs. We identified activating mutations of JAK1 and/or STAT3 genes in ?20% of 88 [corrected] ALK(-) ALCLs and demonstrated that 38% of systemic ALK(-) ALCLs displayed double lesions. Recurrent chimeras combining a transcription factor (NFkB2 or NCOR2) with a tyrosine kinase (ROS1 or TYK2) were also discovered in WT JAK1/STAT3 ALK(-) ALCL. All these aberrations lead to the constitutive activation of the JAK/STAT3 pathway, which was proved oncogenic. Consistently, JAK/STAT3 pathway inhibition impaired cell growth in vitro and in vivo.

SUBMITTER: Crescenzo R 

PROVIDER: S-EPMC5898430 | biostudies-literature | 2015 Apr

REPOSITORIES: biostudies-literature

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Convergent mutations and kinase fusions lead to oncogenic STAT3 activation in anaplastic large cell lymphoma.

Crescenzo Ramona R   Abate Francesco F   Lasorsa Elena E   Tabbo' Fabrizio F   Gaudiano Marcello M   Chiesa Nicoletta N   Di Giacomo Filomena F   Spaccarotella Elisa E   Barbarossa Luigi L   Ercole Elisabetta E   Todaro Maria M   Boi Michela M   Acquaviva Andrea A   Ficarra Elisa E   Novero Domenico D   Rinaldi Andrea A   Tousseyn Thomas T   Rosenwald Andreas A   Kenner Lukas L   Cerroni Lorenzo L   Tzankov Alexander A   Ponzoni Maurilio M   Paulli Marco M   Weisenburger Dennis D   Chan Wing C WC   Iqbal Javeed J   Piris Miguel A MA   Zamo' Alberto A   Ciardullo Carmela C   Rossi Davide D   Gaidano Gianluca G   Pileri Stefano S   Tiacci Enrico E   Falini Brunangelo B   Shultz Leonard D LD   Mevellec Laurence L   Vialard Jorge E JE   Piva Roberto R   Bertoni Francesco F   Rabadan Raul R   Inghirami Giorgio G  

Cancer cell 20150401 4


A systematic characterization of the genetic alterations driving ALCLs has not been performed. By integrating massive sequencing strategies, we provide a comprehensive characterization of driver genetic alterations (somatic point mutations, copy number alterations, and gene fusions) in ALK(-) ALCLs. We identified activating mutations of JAK1 and/or STAT3 genes in ∼20% of 88 [corrected] ALK(-) ALCLs and demonstrated that 38% of systemic ALK(-) ALCLs displayed double lesions. Recurrent chimeras co  ...[more]

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