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1.
Oncogene ; 37(5): 616-626, 2018 02 01.
Article in English | MEDLINE | ID: mdl-28991228

ABSTRACT

Ossifying fibroma (OF) is a rare benign tumor of the craniofacial bones that can reach considerable and disfiguring dimensions if left untreated. Although the clinicopathological characteristics of OF are well established, the underlying etiology has remained largely unknown. Our work indicates that Men1-a tumor suppressor gene responsible of Multiple endocrine neoplasia type 1-is critical for OF formation and shows that mice with targeted disruption of Men1 in osteoblasts (Men1Runx2Cre) develop multifocal OF in the mandible with a 100% penetrance. Using lineage-tracing analysis, we demonstrate that loss of Men1 arrests stromal osteoprogenitors in OF at the osterix-positive pre-osteoblastic differentiation stage. Analysis of Men1-lacking stromal spindle cells isolated from OF (OF-derived MSCs (OFMSCs)) revealed a downregulation of the cyclin-dependent kinase (CDK) inhibitor Cdkn1a, consistent with an increased proliferation rate. Intriguingly, the re-expression of Men1 in Men1-deficient OFMSCs restored Cdkn1a expression and abrogated cellular proliferation supporting the tumor-suppressive role of Men1 in OF. Although our work presents the first evidence of Men1 in OF development, it further provides the first genetic mouse model of OF that can be used to better understand the molecular pathogenesis of these benign tumors and to potentially develop novel treatment strategies.


Subject(s)
Cell Differentiation/genetics , Fibroma, Ossifying/genetics , Osteoblasts/pathology , Osteogenesis/genetics , Proto-Oncogene Proteins/genetics , Animals , Cell Proliferation/genetics , Cyclin-Dependent Kinase Inhibitor p21/genetics , Cyclin-Dependent Kinase Inhibitor p21/metabolism , Disease Models, Animal , Down-Regulation , Fibroma, Ossifying/diagnostic imaging , Fibroma, Ossifying/pathology , Humans , Male , Mandible/cytology , Mandible/pathology , Mice , Mice, Transgenic , Multiple Endocrine Neoplasia Type 1/genetics , Osteoblasts/metabolism , Primary Cell Culture , Sequence Deletion , Tumor Cells, Cultured , X-Ray Microtomography
2.
Cell Death Differ ; 22(9): 1451-62, 2015 Sep.
Article in English | MEDLINE | ID: mdl-25613381

ABSTRACT

Monoubiquitination of core histone 2A (H2A-K119u) has a critical role in gene regulation in hematopoietic differentiation and other developmental processes. To explore the interplay of histone H2A deubiquitinase Myb-like SWIRM and MPN domain containing1 (2A-DUB/Mysm1) with the p53 axis in the sequential differentiation of mature lymphocytes from progenitors, we systematically analyzed hematopoiesis and early T-cell development using Mysm1(-/-) and p53(-/-)Mysm1(-/-) mice. Mysm1(-/-) thymi were severely hypoplastic with <10% of wild-type cell numbers as a result of a reduction of early thymocyte progenitors in context with defective hematopoietic stem cells, a partial block at the double-negative (DN)1-DN2 transition and increased apoptosis of double-positive thymocytes. Increased rates of apoptosis were also detected in other tissues affected by Mysm1 deficiency, including the developing brain and the skin. By quantitative PCR and chromatin immunoprecipitation analyses, we identified p19(ARF), an important regulator of p53 tumor suppressor protein levels, as a potential Mysm1 target gene. In newly generated p53(-/-)Mysm1(-/-) double-deficient mice, anomalies of Mysm1(-/-) mice including reduction of lymphoid-primed multipotent progenitors, reduced thymocyte numbers and viability, and interestingly defective B-cell development, growth retardation, neurological defects, skin atrophy, and tail malformation were almost completely restored as well, substantiating the involvement of the p53 pathway in the alterations caused by Mysm1 deficiency. In conclusion, this investigation uncovers a novel link between H2A deubiquitinase 2A-DUB/Mysm1 and suppression of p53-mediated apoptotic programs during early lymphoid development and other developmental processes.


Subject(s)
Cyclin-Dependent Kinase Inhibitor p19/metabolism , Endopeptidases/metabolism , Hematopoiesis/physiology , Histones/metabolism , T-Lymphocytes/cytology , Tumor Suppressor Protein p53/metabolism , Animals , Cell Differentiation/physiology , Gene Expression Profiling , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , T-Lymphocytes/metabolism , Trans-Activators , Ubiquitin-Specific Proteases
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