Platelet-derived growth factor alpha mediates the proliferation of peripheral T-cell lymphoma cells via an autocrine regulatory pathway.

TitlePlatelet-derived growth factor alpha mediates the proliferation of peripheral T-cell lymphoma cells via an autocrine regulatory pathway.
Publication TypeJournal Article
Year of Publication2014
AuthorsPiccaluga PP, Rossi M, Agostinelli C, Ricci F, Gazzola A, Righi S, Fuligni F, Laginestra MA, Mancini M, Sapienza MR, De Renzo A, Tazzari PL, Gibellini D, Went P, Alviano F, Zinzani PL, Bagnara GP, Inghirami G, Tripodo C, Pileri SA
JournalLeukemia
Volume28
Issue8
Pagination1687-97
Date Published2014 Aug
ISSN1476-5551
KeywordsAutocrine Communication, Cell Line, Tumor, Cell Proliferation, Extracellular Signal-Regulated MAP Kinases, Humans, Lymphoma, T-Cell, Peripheral, Platelet-Derived Growth Factor, Proto-Oncogene Proteins c-akt, Receptor, Platelet-Derived Growth Factor alpha, STAT1 Transcription Factor, STAT5 Transcription Factor
Abstract

Peripheral T-cell lymphomas not otherwise specified (PTCL/NOS) are very aggressive tumors characterized by consistent aberrant expression of platelet-derived growth factor receptor alpha (PDGFRA). In this study, we aimed to identify the determinants of PDGFRA activity in PTCL/NOS and to elucidate the biological consequences of its activation. We observed overexpression of the PDGFRA gene by gene expression profiling in most of the tested PTCLs and confirmed the expression of PDGFRA and phospho-PDGFRA using immunohistochemistry. The integrity of the PDFGRA locus was demonstrated using several different approaches, including massive parallel sequencing and Sanger sequencing. PDGF-AA was found to be expressed and secreted by PTCL/NOS cells and to be necessary and sufficient for PDGFRA phosphorylation ex vivo by sustaining an autocrine stimulation. We documented consistently high PDGF-A expression in primary biopsies and patients' plasma and tracked PDGFRA signaling in primary tumors, achieving evidence of its activation. Indeed, we found that STAT1 and STAT5 are implicated in PDGFRA signaling transduction. Finally, we demonstrated that PDGFRA activation supported tumor cell proliferation and provided the first evidence of the anti-lymphoma activity of PDGRA inhibition in a PTCL/NOS patient. Altogether, our data demonstrated that PDGFRA activity fosters PTCL/NOS proliferation via an autocrine loop.

DOI10.1038/leu.2014.50
Alternate JournalLeukemia
PubMed ID24480986
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Giorgio Inghirami, M.D.

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