4.7 Article

Cytoplasmic cyclin D1 controls the migration and invasiveness of mantle lymphoma cells

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SCIENTIFIC REPORTS
卷 7, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41598-017-14222-1

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资金

  1. ITMO Biologie cellulaire, developpement et evolution
  2. Ligue contre le Cancer-Comite de l'Orne
  3. Fondo de Investigacion Sanitaria [PI12/01847, PI15/00102]
  4. European Regional Development Fund (ERDF) Una manera de hacer Europa
  5. European Research Council [CoG-2014-646903]
  6. Spanish Ministry of Economy and Competitiveness [SAF-SAF2013-43065]
  7. Obra Social La Caixa-Fundacio Josep Carreras
  8. Generalitat de Catalunya [SGR330]
  9. Canceropole Nord-Ouest
  10. Ministerio de Educacion, Cultura y Deporte [PIE13/00033]
  11. Instituto de Salud Carlos III [PIE13/00033]

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Mantle cell lymphoma (MCL) is a hematologic neoplasm characterised by the t(11; 14)(q13; q32) translocation leading to aberrant cyclin D1 expression. The cell functions of cyclin D1 depend on its partners and/or subcellular distribution, resulting in different oncogenic properties. We observed the accumulation of cyclin D1 in the cytoplasm of a subset of MCL cell lines and primary cells. In primary cells, this cytoplasmic distribution was correlated with a more frequent blastoid phenotype. We performed immunoprecipitation assays and mass spectrometry on enriched cytosolic fractions from two cell lines. The cyclin D1 interactome was found to include several factors involved in adhesion, migration and invasion. We found that the accumulation of cyclin D1 in the cytoplasm was associated with higher levels of migration and invasiveness. We also showed that MCL cells with high cytoplasmic levels of cyclin D1 engrafted more rapidly into the bone marrow, spleen, and brain in immunodeficient mice. Both migration and invasion processes, both in vivo and in vitro, were counteracted by the exportin 1 inhibitor KPT-330, which retains cyclin D1 in the nucleus. Our data reveal a role of cytoplasmic cyclin D1 in the control of MCL cell migration and invasion, and as a true operator of MCL pathogenesis.

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