The prognosis for adults with precursor B-cell acute lymphoblastic leukemia (B-ALL) remains poor, in part from a lack of therapeutic targets. We identified the type I cytokine receptor subunit CRLF2 in a functional screen for B-ALL-derived mRNA transcripts that can substitute for IL3 signaling. We demonstrate that CRLF2 is over-expressed in approximately 15% of adult and high-risk pediatric BALL that lack MLL, TCF3, TEL, and BCR/ABL rearrangements, but not in B-ALL with these rearrangements or other lymphoid malignancies. CRLF2 overexpression can result from translocation with the IGH locus or intrachromosomal deletion and is associated with poor outcome. CRLF2 overexpressing B-ALLs share a transcriptional signature that significantly overlaps with a BCR/ABL signature, and is enriched for genes involved in cytokine receptor and JAK-STAT signaling. In a subset of cases, CRLF2 harbors a Phe232Cys gain-of-function mutation that promotes constitutive dimerization and cytokine independent growth. A mutually exclusive subset harbors activating mutations in JAK2. In fact, all 22 B-ALLs with mutant JAK2 that we analyzed overexpress CRLF2, distinguishing CRLF2 as the key scaffold for mutant JAK2 signaling in B-ALL. Expression of WT CRLF2 with mutant JAK2 also promotes cytokine independent growth that, unlike CRLF2 Phe232Cys or ligand-induced signaling by WT CRLF2, is accompanied by JAK2 phosphorylation. Finally, cells dependent on CRLF2 signaling are sensitive to small molecule inhibitors of either JAKs or protein kinase C family kinases. Together, these findings implicate CRLF2 as an important factor in B-ALL with diagnostic, prognostic, and therapeutic implications.

Functional screening identifies CRLF2 in precursor B-cell acute lymphoblastic leukemia / A., Yoda; Y., Yoda; Chiaretti, Sabina; M., Bar Natan; K., Mani; S. J., Rodig; N., West; Y., Xiao; J. R., Brown; C., Mitsiades; M., Sattler; J. L., Kutok; D. J., Deangelo; M., Wadleigh; A., Piciocchi; P., Dal Cin; J. E., Bradner; J. D., Griffin; K. C., Anderson; R. M., Stone; J., Ritz; Foa, Roberto; J. C., Aster; Frank, Da; D. M., Weinstock. - In: PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA. - ISSN 0027-8424. - 107:1(2010), pp. 252-257. [10.1073/pnas.0911726107]

Functional screening identifies CRLF2 in precursor B-cell acute lymphoblastic leukemia

CHIARETTI, sabina;FOA, Roberto;
2010

Abstract

The prognosis for adults with precursor B-cell acute lymphoblastic leukemia (B-ALL) remains poor, in part from a lack of therapeutic targets. We identified the type I cytokine receptor subunit CRLF2 in a functional screen for B-ALL-derived mRNA transcripts that can substitute for IL3 signaling. We demonstrate that CRLF2 is over-expressed in approximately 15% of adult and high-risk pediatric BALL that lack MLL, TCF3, TEL, and BCR/ABL rearrangements, but not in B-ALL with these rearrangements or other lymphoid malignancies. CRLF2 overexpression can result from translocation with the IGH locus or intrachromosomal deletion and is associated with poor outcome. CRLF2 overexpressing B-ALLs share a transcriptional signature that significantly overlaps with a BCR/ABL signature, and is enriched for genes involved in cytokine receptor and JAK-STAT signaling. In a subset of cases, CRLF2 harbors a Phe232Cys gain-of-function mutation that promotes constitutive dimerization and cytokine independent growth. A mutually exclusive subset harbors activating mutations in JAK2. In fact, all 22 B-ALLs with mutant JAK2 that we analyzed overexpress CRLF2, distinguishing CRLF2 as the key scaffold for mutant JAK2 signaling in B-ALL. Expression of WT CRLF2 with mutant JAK2 also promotes cytokine independent growth that, unlike CRLF2 Phe232Cys or ligand-induced signaling by WT CRLF2, is accompanied by JAK2 phosphorylation. Finally, cells dependent on CRLF2 signaling are sensitive to small molecule inhibitors of either JAKs or protein kinase C family kinases. Together, these findings implicate CRLF2 as an important factor in B-ALL with diagnostic, prognostic, and therapeutic implications.
2010
Adult, Child, Cytokines; metabolism, DNA Mutational Analysis, Female, Humans, Janus Kinase 2; genetics/metabolism, Male, Mutation, Precursor B-Cell Lymphoblastic Leukemia-Lymphoma; diagnosis/genetics/metabolism, Prognosis, Receptors; Cytokine; genetics/metabolism, Signal Transduction; physiology, Survival Rate, Transcription; Genetic
01 Pubblicazione su rivista::01a Articolo in rivista
Functional screening identifies CRLF2 in precursor B-cell acute lymphoblastic leukemia / A., Yoda; Y., Yoda; Chiaretti, Sabina; M., Bar Natan; K., Mani; S. J., Rodig; N., West; Y., Xiao; J. R., Brown; C., Mitsiades; M., Sattler; J. L., Kutok; D. J., Deangelo; M., Wadleigh; A., Piciocchi; P., Dal Cin; J. E., Bradner; J. D., Griffin; K. C., Anderson; R. M., Stone; J., Ritz; Foa, Roberto; J. C., Aster; Frank, Da; D. M., Weinstock. - In: PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA. - ISSN 0027-8424. - 107:1(2010), pp. 252-257. [10.1073/pnas.0911726107]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/230308
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