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Published on: February 28, 2017
Structurally distinct ligand-binding or ligand-independent Notch1 mutants are leukemogenic but affect thymocyte
Elena Priceputu1, Isabelle Bouallaga, YaoPing Zhang
1Laboratory of Molecular Biology, Clinical Research Institute of Montreal, 110 Pine Avenue West, Montréal, Québec, Canada.
Abstract:
We previously found that provirus insertion in T cell tumors of mouse mammary tumor virus/c-myc transgenic (Tg) mice induced two forms of Notch1 mutations. Type I mutations generated two truncated molecules, one intracellular (IC) (Notch1(IC)) and one extracellular (Notch1(EC)), while in type II mutations Notch1 was deleted of its C terminus (Notch1(DeltaCT)). We expressed these mutants in Tg mice using the CD4 promoter. Both Notch1(IC) and Notch1(DeltaCT), but not Notch1(EC), Tg mice developed double-positive (DP) thymomas. These disseminated more frequently in Notch1(DeltaCT) Tg mice. Double (Notch1(IC) x myc) or (Notch1(DeltaCT) x myc) Tg mice developed thymoma with a much shorter latency than single Tg mice, providing genetic evidence of a collaboration between these two oncogenes. FACS analysis of preleukemic thymocytes did not reveal major T cell differentiation anomalies, except for a higher number of DP cells and an accumulation of TCR(high)CD2(high)CD25(high) DP cells in Notch1(IC), and less so in Notch1(DeltaCT) Tg mice. This was associated with enhanced in vivo thymocyte proliferation. However, Notch1(IC), but not Notch1(DeltaCT), DP thymocytes were protected against apoptosis induced in vivo by dexamethasone and anti-CD3 and in vitro by anti-CD3/CD28 Abs. This indicates that the C terminus of Notch1 and/or the conserved regulation by its ligands have a significant impact on the induced T cell phenotype. Therefore, Notch1(IC) and Notch1(DeltaCT) behave as oncogenes for T cells. Because these two Notch1 mutations are very similar to those described in some forms of human T cell leukemia, these Tg mice may represent relevant models of these human leukemias.
Insights
Two Notch1 mutations, Notch1(IC) and Notch1(DeltaCT), act as oncogenes in T cells, driving thymoma development in transgenic mice. These models mimic human T cell leukemia, highlighting Notch1
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Mouse mammary tumor virus/c-myc transgenic mice develop T cell tumors with provirus insertions.
- Two Notch1 mutation types were identified: Type I (truncated Notch1(IC) and Notch1(EC)) and Type II (Notch1(DeltaCT)).
Purpose of the Study:
- To investigate the oncogenic potential of Notch1(IC) and Notch1(DeltaCT) mutations in T cell development and thymoma formation.
- To explore the collaborative oncogenic effects of Notch1 mutations with c-myc.
- To establish relevant mouse models for human T cell leukemia.
Main Methods:
- Expression of Notch1(IC) and Notch1(DeltaCT) mutants in transgenic mice using the CD4 promoter.
- Generation of double transgenic mice (Notch1 x myc).
- Flow cytometry (FACS) analysis of thymocytes.
- Assessment of thymocyte proliferation and apoptosis.
Main Results:
- Notch1(IC) and Notch1(DeltaCT) transgenic mice developed double-positive (DP) thymomas, with more frequent dissemination in Notch1(DeltaCT) mice.
- Double transgenic mice (Notch1 x myc) exhibited significantly shorter thymoma latency, indicating oncogene collaboration.
- Notch1(IC) DP thymocytes showed enhanced proliferation and resistance to apoptosis, unlike Notch1(DeltaCT) DP thymocytes.
Conclusions:
- Both Notch1(IC) and Notch1(DeltaCT) function as T cell oncogenes.
- The C terminus of Notch1 and its ligand regulation significantly impact T cell phenotype.
- These transgenic mouse models closely resemble human T cell leukemias, offering valuable research tools.
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