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Published on: February 21, 2018
t(8;9)(p22;p24)/PCM1-JAK2 activates SOCS2 and SOCS3 via STAT5
Stefan Ehrentraut1, Stefan Nagel, Michaela E Scherr
1Leibniz Institute, DSMZ-German Collection of Microorganisms and Cell Cultures, Department of Human and Animal Cell Cultures, Braunschweig, Germany.
Abstract:
Fusions of the tyrosine kinase domain of JAK2 with multiple partners occur in leukemia/lymphoma where they reportedly promote JAK2-oligomerization and autonomous signalling, Affected entities are promising candidates for therapy with JAK2 signalling inhibitors. While JAK2-translocations occur in myeloid, B-cell and T-cell lymphoid neoplasms, our findings suggest their incidence among the last group is low. Here we describe the genomic, transcriptional and signalling characteristics of PCM1-JAK2 formed by t(8;9)(p22;p24) in a trio of cell lines established at indolent (MAC-1) and aggressive (MAC-2A/2B) phases of a cutaneous T-cell lymphoma (CTCL). To investigate signalling, PCM1-JAK2 was subjected to lentiviral knockdown which inhibited 7 top upregulated genes in t(8;9) cells, notably SOCS2/3. SOCS3, but not SOCS2, was also upregulated in a chronic eosinophilic leukemia bearing PCM1-JAK2, highlighting its role as a central signalling target of JAK2 translocation neoplasia. Conversely, expression of GATA3, a key T-cell developmental gene silenced in aggressive lymphoma cells, was partially restored by PCM1-JAK2 knockdown. Treatment with a selective JAK2 inhibitor (TG101348) to which MAC-1/2A/2B cells were conspicuously sensitive confirmed knockdown results and highlighted JAK2 as the active moiety. PCM1-JAK2 signalling required pSTAT5, supporting a general paradigm of STAT5 activation by JAK2 alterations in lymphoid malignancies. MAC-1/2A/2B--the first JAK2-translocation leukemia/lymphoma cell lines described--display conspicuous JAK/STAT signalling accompanied by T-cell developmental and autoimmune disease gene expression signatures, confirming their fitness as CTCL disease models. Our data support further investigation of SOCS2/3 as signalling effectors, prognostic indicators and potential therapeutic targets in cancers with JAK2 rearrangements.
Insights
JAK2 fusions drive T-cell lymphoma by promoting signaling. Inhibiting JAK2 with TG101348 and targeting SOCS2/3 shows therapeutic potential for these JAK-STAT driven cancers.
Area of Science:
- Oncology
- Molecular Biology
- Hematology
Background:
- Janus kinase 2 (JAK2) fusions in leukemia/lymphoma promote aberrant signaling.
- JAK2 inhibitors are potential therapies for these malignancies.
- JAK2 translocations are known in myeloid and lymphoid neoplasms, but their incidence in T-cell lymphomas is less understood.
Purpose of the Study:
- To characterize the genomic, transcriptional, and signaling features of PCM1-JAK2 in cutaneous T-cell lymphoma (CTCL).
- To investigate the role of PCM1-JAK2 in T-cell lymphoma pathogenesis and identify potential therapeutic targets.
Main Methods:
- Established and characterized three cell lines (MAC-1, MAC-2A/2B) from indolent and aggressive CTCL phases with PCM1-JAK2.
- Utilized lentiviral knockdown of PCM1-JAK2 to assess gene expression and signaling pathways.
- Treated cells with a selective JAK2 inhibitor (TG101348) to evaluate therapeutic response.
Main Results:
- PCM1-JAK2 knockdown inhibited key upregulated genes, including SOCS2/3, and partially restored silenced GATA3 expression.
- JAK2 inhibition with TG101348 confirmed the sensitivity of CTCL cells and highlighted JAK2 as the active driver.
- PCM1-JAK2 signaling involved pSTAT5 activation, consistent with JAK2 alterations in lymphoid malignancies.
Conclusions:
- PCM1-JAK2 is a driver of CTCL, characterized by aberrant JAK/STAT signaling and altered T-cell developmental gene expression.
- SOCS2/3 are identified as key signaling effectors and potential therapeutic targets in JAK2-rearranged cancers.
- The characterized cell lines serve as valuable models for studying CTCL and developing targeted therapies.
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