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STAT3 Mutation Is Associated with STAT3 Activation in CD30+ ALK- ALCL
Emma I Andersson1,2,3, Oscar Brück1,2, Till Braun4
1Hematology Research Unit Helsinki, Department of Hematology, University of Helsinki and Helsinki University Hospital Comprehensive Cancer Center, 00290 Helsinki, Finland.
Abstract:
Peripheral T-cell lymphomas (PTCL) are a heterogeneous, and often aggressive group of non-Hodgkin lymphomas. Recent advances in the molecular and genetic characterization of PTCLs have helped to delineate differences and similarities between the various subtypes, and the JAK/STAT pathway has been found to play an important oncogenic role. Here, we aimed to characterize the JAK/STAT pathway in PTCL subtypes and investigate whether the activation of the pathway correlates with the frequency of STAT gene mutations. Patient samples from AITL (n = 30), ALCL (n = 21) and PTCL-NOS (n = 12) cases were sequenced for STAT3, STAT5B, JAK1, JAK3, and RHOA mutations using amplicon sequencing and stained immunohistochemically for pSTAT3, pMAPK, and pAKT. We discovered STAT3 mutations in 13% of AITL, 13% of ALK+ ALCL, 38% of ALK- ALCL and 17% of PTCL-NOS cases. However, no STAT5B mutations were found and JAK mutations were only present in ALK- ALCL (15%). Concurrent mutations were found in all subgroups except ALK+ ALCL where STAT3 mutations were always seen alone. High pY-STAT3 expression was observed especially in AITL and ALCL samples. When studying JAK-STAT pathway mutations, pY-STAT3 expression was highest in PTCLs harboring either JAK1 or STAT3 mutations and CD30+ phenotype representing primarily ALK- ALCLs. Further investigation is needed to elucidate the molecular mechanisms of JAK-STAT pathway activation in PTCL.
Insights
Peripheral T-cell lymphomas (PTCL) subtypes show varying JAK/STAT pathway activation. STAT3 mutations are common, particularly in ALK-negative ALCL, correlating with high pY-STAT3 expression.
Area of Science:
- Oncology
- Molecular Biology
- Hematology
Background:
- Peripheral T-cell lymphomas (PTCL) are aggressive non-Hodgkin lymphomas with diverse subtypes.
- The JAK/STAT pathway is implicated in the oncogenesis of PTCL.
- Understanding pathway activation is crucial for targeted therapies.
Purpose of the Study:
- To characterize JAK/STAT pathway activation in PTCL subtypes.
- To investigate the correlation between pathway activation and STAT gene mutations.
- To identify potential therapeutic targets in PTCL.
Main Methods:
- Amplicon sequencing of STAT3, STAT5B, JAK1, JAK3, and RHOA.
- Immunohistochemical staining for pSTAT3, pMAPK, and pAKT.
- Analysis of patient samples from AITL, ALCL (ALK+ and ALK-), and PTCL-NOS.
Main Results:
- STAT3 mutations found in 13% of AITL, 13% of ALK+ ALCL, 38% of ALK- ALCL, and 17% of PTCL-NOS.
- JAK mutations detected only in ALK- ALCL (15%).
- High pY-STAT3 expression observed in AITL and ALCL, particularly in PTCLs with JAK1 or STAT3 mutations and CD30+ phenotype.
Conclusions:
- STAT3 mutations are prevalent in specific PTCL subtypes, especially ALK-negative ALCL.
- JAK/STAT pathway activation, indicated by pY-STAT3, is associated with certain mutations and phenotypes.
- Further research is needed to clarify JAK-STAT pathway mechanisms in PTCL.
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