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FoxN1-dependent thymic epithelial cells promote T-cell leukemia development

View ORCID ProfileMarinella N. Ghezzo, Mónica T. Fernandes, Rui S. Machado, View ORCID ProfileIvette Pacheco-Leyva, Marta A.S. Araújo, View ORCID ProfileRavi K. Kalathur, View ORCID ProfileMatthias E. Futschik, View ORCID ProfileNuno L. Alves, View ORCID ProfileNuno R. dos Santos
doi: https://doi.org/10.1101/247015
Marinella N. Ghezzo
1Centre for Biomedical Research (CBMR), University of Algarve, 8005-139 Faro, Portugal
2PhD Program in Biomedical Sciences, Department of Biomedical Sciences and Medicine, University of Algarve, 8005-139 Faro, Portugal
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Mónica T. Fernandes
1Centre for Biomedical Research (CBMR), University of Algarve, 8005-139 Faro, Portugal
2PhD Program in Biomedical Sciences, Department of Biomedical Sciences and Medicine, University of Algarve, 8005-139 Faro, Portugal
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Rui S. Machado
1Centre for Biomedical Research (CBMR), University of Algarve, 8005-139 Faro, Portugal
3ProRegeM PhD Program, Department of Biomedical Sciences and Medicine, University of Algarve, 8005-139 Faro, Portugal
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Ivette Pacheco-Leyva
4Instituto de Investigação e Inovação em Saúde (i3S), University of Porto, 4200 Porto, Portugal
5Institute of Pathology and Molecular Immunology of the University of Porto (IPATIMUP), 4200 Porto, Portugal
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Marta A.S. Araújo
4Instituto de Investigação e Inovação em Saúde (i3S), University of Porto, 4200 Porto, Portugal
5Institute of Pathology and Molecular Immunology of the University of Porto (IPATIMUP), 4200 Porto, Portugal
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Ravi K. Kalathur
1Centre for Biomedical Research (CBMR), University of Algarve, 8005-139 Faro, Portugal
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Matthias E. Futschik
1Centre for Biomedical Research (CBMR), University of Algarve, 8005-139 Faro, Portugal
6Centre of Marine Sciences (CCMAR), University of Algarve, 8005-139 Faro, Portugal
7School of Biomedical and Healthcare Sciences, Plymouth University Peninsula Schools of Medicine and Dentistry, Plymouth, Devon, United Kingdom.
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Nuno L. Alves
4Instituto de Investigação e Inovação em Saúde (i3S), University of Porto, 4200 Porto, Portugal
8Thymus Development and Function Laboratory, Instituto de Biologia Molecular e Celular, Porto, Portugal
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Nuno R. dos Santos
1Centre for Biomedical Research (CBMR), University of Algarve, 8005-139 Faro, Portugal
4Instituto de Investigação e Inovação em Saúde (i3S), University of Porto, 4200 Porto, Portugal
5Institute of Pathology and Molecular Immunology of the University of Porto (IPATIMUP), 4200 Porto, Portugal
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  • For correspondence: nunos@ipatimup.pt
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Abstract

T-cell acute lymphoblastic leukemia (T-ALL) is an aggressive malignancy of thymocytes. The role of thymic microenvironmental cells and stromal factors in thymocyte malignant transformation and T-ALL development remains little explored. Here, using the TEL-JAK2 transgenic (TJ2-Tg) mouse model of T-ALL, which is driven by constitutive JAK/STAT signaling and characterized by the acquisition of Notch1 mutations, we sought to identify stromal cell alterations associated with thymic leukemogenesis. Immunofluorescence analyses showed that thymic lymphomas presented epithelial areas characterized by keratin 5 and keratin 8 expression, adjacently to keratin-negative, epithelial-free areas. Both keratin-positive and -negative areas stained conspicuously with ER-TR7 (a fibroblast marker), laminin, and CD31 (an endothelial cell marker). Besides keratin 5, keratin-positive areas were also labeled by the Ulex Europaeus agglutinin-1 medullary thymic epithelial cell (TEC) marker. To assess whether TECs are important for T-ALL development, we generated TJ2-Tg mice heterozygous for the FoxN1 transcription factor nude null mutation. In contrast to nude homozygous mice, which lack thymus and thymocytes, heterozygous mutant mice present only mild thymocyte maturation defects. In TJ2-Tg;Foxn1+/nu compound mice both emergence of malignant cells in pre-leukemic thymi and overt T-ALL onset were significantly delayed. Moreover, in transplantation assays leukemic cell expansion in the thymus of recipient Foxn1+/nu mice was reduced as compared to control littermates. These results indicate that FoxN1 insufficiency impairs specifically thymic leukemogenesis but not thymocyte development.

Summary In a mouse model of T-ALL, several cellular alterations were detected in thymic lymphomas, including altered epithelial distribution and increased proportion of fibroblasts or endothelial cells. Reduced dosage of FoxN1, a thymic epithelial transcription factor, delayed leukemogenesis in these mice.

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Posted January 11, 2018.
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FoxN1-dependent thymic epithelial cells promote T-cell leukemia development
Marinella N. Ghezzo, Mónica T. Fernandes, Rui S. Machado, Ivette Pacheco-Leyva, Marta A.S. Araújo, Ravi K. Kalathur, Matthias E. Futschik, Nuno L. Alves, Nuno R. dos Santos
bioRxiv 247015; doi: https://doi.org/10.1101/247015
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FoxN1-dependent thymic epithelial cells promote T-cell leukemia development
Marinella N. Ghezzo, Mónica T. Fernandes, Rui S. Machado, Ivette Pacheco-Leyva, Marta A.S. Araújo, Ravi K. Kalathur, Matthias E. Futschik, Nuno L. Alves, Nuno R. dos Santos
bioRxiv 247015; doi: https://doi.org/10.1101/247015

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