4.7 Article

The proteomic signature of NPM/ALK reveals deregulation of multiple cellular pathways

Journal

BLOOD
Volume 114, Issue 8, Pages 1585-1595

Publisher

AMER SOC HEMATOLOGY
DOI: 10.1182/blood-2009-02-204735

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Funding

  1. Children's Oncology Group Translational Research Award
  2. ARUP Institute for Experimental Pathology

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Constitutive expression of the chimeric NPM/ALK fusion protein encoded by the t(2; 5)(p32; q35) is a key oncogenic event in the pathogenesis of most anaplastic large cell lymphomas (ALCLs). The proteomic network alterations produced by this aberration remain largely uncharacterized. Using a mass spectrometry (MS)driven approach to identify changes in protein expression caused by the NPM/ALK fusion, we identified diverse NPM/ALK-induced changes affecting cell proliferation, ribosome synthesis, survival, apoptosis evasion, angiogenesis, and cytoarchitectural organization. MS-based findings were confirmed using Western blotting and/or immunostaining of NPM/ALK-transfected cells and ALK-deregulated lymphomas. A subset of the proteins distinguished NPM/ALK-positiveALCLs from NPM/ALK-negative ALCLs and Hodgkin lymphoma. The multiple NPM/ALKderegulated pathways identified by MS analysis also predicted novel biologic effects of NPM/ALK expression. In this regard, we showed loss of cell adhesion as a consequence of NPM/ALK expression in a kinase-dependent manner, and sensitivity of NPM/ALK-positive ALCLs to inhibition of the RAS, p42/44ERK, and FRAP/mTOR signaling pathways. These findings reveal that the NPM/ALK alteration affects diverse cellular pathways, and provide novel insights into NPM/ALK-positive ALCL pathobiology. Our studies carry important implications for the use of MS-driven approaches for the elucidation of neoplastic pathobiology, the identification of novel diagnostic biomarkers, and pathogenetically relevant therapeutic targets. (Blood. 2009; 114: 1585-1595)

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