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Hematopoietic-restricted Ptpn11E76K reveals indolent MPN progression in mice
Stefan P Tarnawsky1, Wen-Mei Yu2, Cheng-Kui Qu2
1Department of Biochemistry and Molecular Biology, Indiana University School of Medicine, Indianapolis, IN, USA.
Insights
New mouse models reveal that Ptpn11 mutations in hematopoietic cells cause thrombocytopenia and T cell reduction, offering insights into juvenile myelomonocytic leukemia (JMML) pathogenesis and potential therapies.
Area of Science:
- Hematology
- Oncology
- Genetics
Background:
- Juvenile Myelomonocytic Leukemia (JMML) is a rare pediatric cancer with poor outcomes.
- Somatic Ptpn11 mutations are a primary driver of JMML, often occurring during fetal development.
- Existing animal models may overstate myeloproliferative neoplasm (MPN) severity due to non-specific gene activation or irradiation.
Purpose of the Study:
- To develop and characterize hematopoietic-restricted mouse models of Ptpn11E76K-driven JMML.
- To investigate the impact of Ptpn11 mutation timing on disease progression.
- To elucidate the specific hematological consequences of hematopoietic-restricted Ptpn11E76K expression.
Main Methods:
- Generation of hematopoietic-restricted mouse models using Csf1r-MCM and Flt3Cre systems.
- Induction of Ptpn11E76K expression in hematopoietic progenitors via tamoxifen administration.
- Analysis of MPN features, peripheral blood counts, extramedullary hematopoiesis, and T cell populations.
Main Results:
- Hematopoietic-restricted Ptpn11E76K expression led to indolent MPN but significant thrombocytopenia and extramedullary hematopoiesis.
- Fetal progenitor-specific induction resulted in more rapid monocytosis than adult progenitor induction.
- Progressive reduction of T cells, particularly CD4+ and naive T cells, was observed, with increased thymic T cell progenitors.
Conclusions:
- Hematopoietic-restricted Ptpn11E76K expression recapitulates key aspects of JMML without exacerbating MPN features.
- The timing of Ptpn11 mutation in hematopoietic progenitors influences monocytosis.
- These findings provide a more accurate model for studying JMML and its associated T cell abnormalities.
Abstract:
Juvenile Myelomonocytic Leukemia (JMML) is a pediatric myeloproliferative neoplasm (MPN) that has a poor prognosis. Somatic mutations in Ptpn11 are the most frequent cause of JMML and they commonly occur in utero. Animal models of mutant Ptpn11 have probed the signaling pathways that contribute to JMML. However, existing models may inappropriately exacerbate MPN features by relying on non-hematopoietic-restricted Cre-loxP strains or transplantations into irradiated recipients. In this study we generate hematopoietic-restricted models of Ptpn11E76K-mediated disease using Csf1r-MCM and Flt3Cre. We show that these animals have indolent MPN progression despite robust GM-CSF hypersensitivity and Ras-Erk hyperactivation. Rather, the dominant pathology is pronounced thrombocytopenia with expanded extramedullary hematopoiesis. Furthermore, we demonstrate that the timing of tamoxifen administration in Csf1r-MCM mice can specifically induce recombinase activity in either fetal or adult hematopoietic progenitors. We take advantage of this technique to show more rapid monocytosis following Ptpn11E76K expression in fetal progenitors compared with adult progenitors. Finally, we demonstrate that Ptpn11E76K results in the progressive reduction of T cells, most notably of CD4+ and naïve T cells. This corresponds to an increased frequency of T cell progenitors in the thymus and may help explain the occasional emergence of T-cell leukemias in JMML patients. Overall, our study is the first to describe the consequences of hematopoietic-restricted Ptpn11E76K expression in the absence of irradiation. Our techniques can be readily adapted by other researchers studying somatically-acquired blood disorders.
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