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1 to 16 of 16  Show
  1. 1
    Category: Sequences.
    Strain: C57BL/6J.
    Source: UniProtKB/Swiss-Prot (reviewed).

    This publication is cited by 42070 other entries.

  2. 2
    "Targeted disruption of the Mn1 oncogene results in severe defects in development of membranous bones of the cranial skeleton."
    Meester-Smoor M.A., Vermeij M., van Helmond M.J., Molijn A.C., van Wely K.H., Hekman A.C., Vermey-Keers C., Riegman P.H., Zwarthoff E.C.
    Mol. Cell. Biol. 25:4229-4236(2005) [PubMed] [Europe PMC] [Abstract]
    Cited for: FUNCTION, DISRUPTION PHENOTYPE.
    Category: Function, Pathology & Biotech.
    Source: UniProtKB/Swiss-Prot (reviewed).
  3. 3
    "The Mn1 transcription factor acts upstream of Tbx22 and preferentially regulates posterior palate growth in mice."
    Liu W., Lan Y., Pauws E., Meester-Smoor M.A., Stanier P., Zwarthoff E.C., Jiang R.
    Development 135:3959-3968(2008) [PubMed] [Europe PMC] [Abstract]
    Cited for: FUNCTION, DEVELOPMENTAL STAGE, DISRUPTION PHENOTYPE.
    Category: Function, Pathology & Biotech, Expression.
    Source: UniProtKB/Swiss-Prot (reviewed).

    This publication is mapped to 90 other entries.

  4. 4
    "Meningioma 1 is required for appropriate osteoblast proliferation, motility, differentiation, and function."
    Zhang X., Dowd D.R., Moore M.C., Kranenburg T.A., Meester-Smoor M.A., Zwarthoff E.C., MacDonald P.N.
    J. Biol. Chem. 284:18174-18183(2009) [PubMed] [Europe PMC] [Abstract]
    Cited for: FUNCTION, TISSUE SPECIFICITY, INDUCTION BY CALCITROL.
    Category: Function, Expression.
    Source: UniProtKB/Swiss-Prot (reviewed).
  5. 5
    "Wnk1 kinase deficiency lowers blood pressure in mice: a gene-trap screen to identify potential targets for therapeutic intervention."
    Zambrowicz B.P., Abuin A., Ramirez-Solis R., Richter L.J., Piggott J., BeltrandelRio H., Buxton E.C., Edwards J., Finch R.A., Friddle C.J., Gupta A., Hansen G., Hu Y., Huang W., Jaing C., Key B.W. Jr., Kipp P., Kohlhauff B.
    Sands A.T.
    Proc. Natl. Acad. Sci. U.S.A. 100:14109-14114(2003) [PubMed] [Europe PMC] [Abstract]
    Category: Pathology & Biotech.
    Source: MGI:1261813.

    This publication is mapped to 38680 other entries.

  6. 6
    "Identification and analysis of genes from the mouse otic vesicle and their association with developmental subprocesses through in situ hybridization."
    Powles N., Babbs C., Ficker M., Schimmang T., Maconochie M.
    Dev. Biol. 268:24-38(2004) [PubMed] [Europe PMC] [Abstract]
    Category: Expression.
    Source: MGI:1261813.

    This publication is mapped to 320 other entries.

  7. 7
    "Conditional MN1-TEL knock-in mice develop acute myeloid leukemia in conjunction with overexpression of HOXA9."
    Kawagoe H., Grosveld G.C.
    Blood 106:4269-4277(2005) [PubMed] [Europe PMC] [Abstract]
    Category: Function, Pathology & Biotech.
    Annotation: leukemogenic effect of MN1-ets variant gene 6 in our knock-in mice is pleiotropic and the type of secondary mutation determines disease outcomeImported.
    Source: GeneRIF:433938, MGI:1261813.

    This publication is mapped to 28 other entries.

  8. 8
    "The transcriptional landscape of the mammalian genome."
    Carninci P., Kasukawa T., Katayama S., Gough J., Frith M.C., Maeda N., Oyama R., Ravasi T., Lenhard B., Wells C., Kodzius R., Shimokawa K., Bajic V.B., Brenner S.E., Batalov S., Forrest A.R., Zavolan M., Davis M.J.
    Hayashizaki Y.
    Science 309:1559-1563(2005) [PubMed] [Europe PMC] [Abstract]
    Category: Sequences.
    Source: MGI:1261813.

    This publication is cited by 10610 and mapped to 42946 other entries.

  9. 9
    "MN1 overexpression is an important step in the development of inv(16) AML."
    Carella C., Bonten J., Sirma S., Kranenburg T.A., Terranova S., Klein-Geltink R., Shurtleff S., Downing J.R., Zwarthoff E.C., Liu P.P., Grosveld G.C.
    Leukemia 21:1679-1690(2007) [PubMed] [Europe PMC] [Abstract]
    Category: Pathology & Biotech.
    Annotation: MN1 overexpression is associated with the development of myeloproliferative diseaseImported.
    Source: GeneRIF:433938.

    This publication is mapped to 3 other entries.

  10. 10
    "Extrinsic signals determine myeloid-erythroid lineage switch in MN1 leukemia."
    Heuser M., Park G., Moon Y., Berg T., Xiang P., Kuchenbauer F., Vollett S., Lai C., Humphries R.K.
    Exp. Hematol. 38:174-179(2010) [PubMed] [Europe PMC] [Abstract]
    Category: Pathology & Biotech.
    Annotation: Data show that genetic disruption of both FLT3 and c-Kit signaling in the MN1-leukemia model was dispensable for MN1-induced leukemogenesis.Imported.
    Source: GeneRIF:433938, MGI:1261813.

    This publication is mapped to 16 other entries.

  11. 11
    Category: Expression.
    Source: MGI:1261813.

    This publication is mapped to 49360 other entries.

  12. 12
    "Overexpression of MN1 confers resistance to chemotherapy, accelerates leukemia onset, and suppresses p53 and Bim induction."
    Pardee T.S.
    PLoS ONE 7:e43185-e43185(2012) [PubMed] [Europe PMC] [Abstract]
    Category: Function.
    Annotation: Overexpression of MN1 confers resistance to chemotherapy accelerates leukemia onset and suppresses p53 and Bim inductionImported.
    Source: GeneRIF:433938.

    This publication is mapped to 212 other entries.

  13. 13
    "Mapping of MN1 sequences necessary for myeloid transformation."
    Kandilci A., Surtel J., Janke L., Neale G., Terranova S., Grosveld G.C.
    PLoS ONE 8:e61706-e61706(2013) [PubMed] [Europe PMC] [Abstract]
    Category: Function, Pathology & Biotech.
    Annotation: The critical amino acid residues in the murine MN1 protein necessary for the neoplastic myeloid transformation have been identified.Imported.
    Source: GeneRIF:433938.
  14. 14
    "Does 3D Phenotyping Yield Substantial Insights in the Genetics of the Mouse Mandible Shape?"
    Navarro N., Maga A.M.
    G3 (Bethesda) 6:1153-1163(2016) [PubMed] [Europe PMC] [Abstract]
    Category: Function, Pathology & Biotech.
    Source: MGI:1261813.

    This publication is mapped to 89 other entries.

  15. 15
    "MLL1 and DOT1L cooperate with meningioma-1 to induce acute myeloid leukemia."
    Riedel S.S., Haladyna J.N., Bezzant M., Stevens B., Pollyea D.A., Sinha A.U., Armstrong S.A., Wei Q., Pollock R.M., Daigle S.R., Jordan C.T., Ernst P., Neff T., Bernt K.M.
    J. Clin. Invest. 126:1438-1450(2016) [PubMed] [Europe PMC] [Abstract]
    Category: Function.
    Annotation: MLL1 and DOT1L cooperate with meningioma-1 to induce acute myeloid leukemia.Imported.
    Source: GeneRIF:433938, MGI:1261813.

    This publication is mapped to 32 other entries.

  16. 16
    "Meis2 as a critical player in MN1-induced leukemia."
    Lai C.K., Norddahl G.L., Maetzig T., Rosten P., Lohr T., Sanchez Milde L., von Krosigk N., Docking T.R., Heuser M., Karsan A., Humphries R.K.
    Blood Cancer J 7:e613-e613(2017) [PubMed] [Europe PMC] [Abstract]
    Annotation: identified Meis2 as critical to MN1-induced leukemia with essential roles in proliferation self-renewal impairment of differentiation and disease progression in vitro and in vivo.Imported.
    Source: GeneRIF:433938.

    This publication is mapped to 7 other entries.

1 to 16 of 16  Show
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