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PMID: 26883104 Published · ppublish English

Prognostic and therapeutic role of targetable lesions in B-lineage acute lymphoblastic leukemia without recurrent fusion genes.

Oncotarget ·Vol. 7 ·No. 12 ·0000-00-00

Messina Monica, Chiaretti Sabina, Wang Jiguang, Fedullo Anna Lucia, Peragine Nadia, Gianfelici Valentina, Piciocchi Alfonso, Brugnoletti Fulvia, Di Giacomo Filomena, Pauselli Simona, Holmes Antony B, Puzzolo Maria Cristina, Ceglie Giulia, Apicella Valerio, Mancini Marco, Te Kronnie Geertruy, Testi Anna Maria, Vitale Antonella, Vignetti Marco, Guarini Anna, Rabadan Raul, Foà Robin

Abstract

To shed light into the molecular bases of B-lineage acute lymphoblastic leukemia lacking known fusion transcripts, i.e. BCR-ABL1, ETV6-RUNX1, E2A-PBX1, and MLL rearrangements (B-NEG ALL) and the differences between children, adolescents/young adults (AYA) and adults, we analyzed 168 B-NEG ALLs by genome-wide technologies. This approach showed that B-NEG cases carry 10.5 mutations and 9.1 copy-number aberrations/sample. The most frequently mutated druggable pathways were those pertaining to RAS/RTK (26.8%) and JAK/STAT (12.5%) signaling. In particular, FLT3 and JAK/STAT mutations were detected mainly in AYA and adults, while KRAS and NRAS mutations were more frequent in children. RAS/RTK mutations negatively affected the outcome of AYA and adults, but not that of children. Furthermore, adult B-NEG ALL carrying JAK/STAT mutations had a shorter survival. In vitro experiments showed that FLT3 inhibitors reduced significantly the proliferation of FLT3-mutated primary B-NEG ALL cells. Likewise, PI3K/mTOR inhibitors reduced the proliferation of primary cells harboring RAS and IL7R mutations. These results refine the genetic landscape of B-NEG ALL and suggest that the different distribution of lesions and their prognostic impact might sustain the diverse outcome between children, adults and partly AYA - whose genomic scenario is similar to adults - and open the way to targeted therapeutic strategies.

Keywords
acute lymphoblastic leukemia copy number aberrations genetic-driven targeted therapy next generation sequencing novel prognostic markers
Article Info
Journal
Oncotarget
Abbr.
Oncotarget
Published
0000-00-00
Indexed
2016-05-21
Updated
2016-10-19
Language
English
Country/Region
United States
NLM ID
101532965
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