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Amplification of a gene encoding a p53-associated protein in human sarcomas.
Nature. 1992 Jul 2;358(6381):80-3
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The mdm-2 oncogene product forms a complex with the p53 protein and inhibits p53-mediated transactivation.
Cell. 1992 Jun 26;69(7):1237-45
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Two distinct mechanisms alter p53 in breast cancer: mutation and nuclear exclusion.
Proc Natl Acad Sci U S A. 1992 Aug 1;89(15):7262-6
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MDM2 gene amplification in metastatic osteosarcoma.
Cancer Res. 1993 Jan 1;53(1):16-8
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The mdm-2 oncogene can overcome wild-type p53 suppression of transformed cell growth.
Mol Cell Biol. 1993 Jan;13(1):301-6
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The DNA-dependent protein kinase: requirement for DNA ends and association with Ku antigen.
Cell. 1993 Jan 15;72(1):131-42
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Oncoprotein MDM2 conceals the activation domain of tumour suppressor p53.
Nature. 1993 Apr 29;362(6423):857-60
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Cancer Res. 1993 May 15;53(10 Suppl):2231-4
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Amplification and overexpression of the MDM2 gene in a subset of human malignant gliomas without p53 mutations.
Cancer Res. 1993 Jun 15;53(12):2736-9
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The p53-mdm-2 autoregulatory feedback loop.
Genes Dev. 1993 Jul;7(7A):1126-32
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Mapping of the p53 and mdm-2 interaction domains.
Mol Cell Biol. 1993 Jul;13(7):4107-14
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Identification and characterization of multiple mdm-2 proteins and mdm-2-p53 protein complexes.
Oncogene. 1993 Sep;8(9):2353-60
PMID: 7689721
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Wild-type p53 protein undergoes cytoplasmic sequestration in undifferentiated neuroblastomas but not in differentiated tumors.
Proc Natl Acad Sci U S A. 1995 May 9;92(10):4407-11
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Stimulation of E2F1/DP1 transcriptional activity by MDM2 oncoprotein.
Nature. 1995 Jun 22;375(6533):691-4
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Interaction between the retinoblastoma protein and the oncoprotein MDM2.
Nature. 1995 Jun 22;375(6533):694-8
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Nuclear export signals and the fast track to the cytoplasm.
Cell. 1995 Aug 11;82(3):341-4
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Identification of a signal for rapid export of proteins from the nucleus.
Cell. 1995 Aug 11;82(3):463-73
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The HIV-1 Rev activation domain is a nuclear export signal that accesses an export pathway used by specific cellular RNAs.
Cell. 1995 Aug 11;82(3):475-83
PMID: 7543368
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Inhibition of HIV-1 replication in lymphocytes by mutants of the Rev cofactor eIF-5A.
Science. 1996 Mar 29;271(5257):1858-60
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Nucleocytoplasmic transport.
Science. 1996 Mar 15;271(5255):1513-8
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Amphibian transcription factor IIIA proteins contain a sequence element functionally equivalent to the nuclear export signal of human immunodeficiency virus type 1 Rev.
Proc Natl Acad Sci U S A. 1996 Apr 2;93(7):2936-40
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Nuclear transport of human immunodeficiency virus type 1, visna virus, and equine infectious anemia virus Rev proteins: identification of a family of transferable nuclear export signals.
J Virol. 1996 Apr;70(4):2350-9
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mdm-2 inhibits the G1 arrest and apoptosis functions of the p53 tumor suppressor protein.
Mol Cell Biol. 1996 May;16(5):2445-52
PMID: 8628312
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Abrogation of wild-type p53 mediated growth-inhibition by nuclear exclusion.
Oncogene. 1996 Apr 18;12(8):1755-65
PMID: 8622896
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Cytoplasmic retention and nuclear import of 5S ribosomal RNA containing RNPs.
EMBO J. 1996 Mar 15;15(6):1383-91
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Distinct domains in ribosomal protein L5 mediate 5 S rRNA binding and nucleolar localization.
J Biol Chem. 1996 May 10;271(19):11571-4
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The human MDM-2 oncogene is overexpressed in leukemias.
Blood. 1993 Nov 1;82(9):2617-23
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Nuclear localization signals (NLS).
Crit Rev Eukaryot Gene Expr. 1993;3(3):193-227
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Physical and functional interaction between wild-type p53 and mdm2 proteins.
Mol Cell Biol. 1994 Feb;14(2):1171-8
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Molecular abnormalities of mdm2 and p53 genes in adult soft tissue sarcomas.
Cancer Res. 1994 Feb 1;54(3):794-9
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Nuclear export of different classes of RNA is mediated by specific factors.
J Cell Biol. 1994 Mar;124(5):627-35
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The mdm-2 oncogene is translocated and overexpressed in a murine plasmacytoma cell line expressing wild-type p53.
Oncogene. 1994 May;9(5):1469-72
PMID: 8152809
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Enhanced translation: a novel mechanism of mdm2 oncogene overexpression identified in human tumor cells.
Oncogene. 1994 Sep;9(9):2745-50
PMID: 8058341
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Several hydrophobic amino acids in the p53 amino-terminal domain are required for transcriptional activation, binding to mdm-2 and the adenovirus 5 E1B 55-kD protein.
Genes Dev. 1994 May 15;8(10):1235-46
PMID: 7926727
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The ribosomal L5 protein is associated with mdm-2 and mdm-2-p53 complexes.
Mol Cell Biol. 1994 Nov;14(11):7414-20
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Regulation of mdm2 expression by p53: alternative promoters produce transcripts with nonidentical translation potential.
Genes Dev. 1994 Aug 1;8(15):1739-49
PMID: 7958853
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J Virol. 1995 May;69(5):3125-33
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RNA export.
Cell. 1995 Apr 21;81(2):153-9
PMID: 7537634
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Blockage by adenovirus E4orf6 of transcriptional activation by the p53 tumor suppressor.
Science. 1996 Jun 7;272(5267):1470-3
PMID: 8633237
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Analysis of the proportion of p53 bound to mdm-2 in cells with defined growth characteristics.
Oncogene. 1996 Jun 6;12(11):2279-89
PMID: 8649767
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Subpopulations of proteasomes in rat liver nuclei, microsomes and cytosol.
Biochem J. 1996 Jun 1;316 ( Pt 2):401-7
PMID: 8687380
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Protein translocation: nuclear export--out of the dark.
Curr Biol. 1996 Feb 1;6(2):137-40
PMID: 8673458
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Adenovirus E1b-58kd tumor antigen and SV40 large tumor antigen are physically associated with the same 54 kd cellular protein in transformed cells.
Cell. 1982 Feb;28(2):387-94
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Adenovirus early region 1B 58,000-dalton tumor antigen is physically associated with an early region 4 25,000-dalton protein in productively infected cells.
J Virol. 1984 Mar;49(3):692-700
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Adenovirus early region 4 encodes functions required for efficient DNA replication, late gene expression, and host cell shutoff.
J Virol. 1985 Oct;56(1):250-7
PMID: 4032537
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Adenovirus E1B proteins are required for accumulation of late viral mRNA and for effects on cellular mRNA translation and transport.
Mol Cell Biol. 1985 Oct;5(10):2552-8
PMID: 2942759
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The adenovirus E1B-55K transforming polypeptide modulates transport or cytoplasmic stabilization of viral and host cell mRNAs.
Mol Cell Biol. 1986 Feb;6(2):470-6
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Cell. 1990 Feb 23;60(4):619-28
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Virology. 1990 Dec;179(2):806-14
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Oncogene. 1990 Nov;5(11):1707-11
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Cell. 1995 Aug 11;82(3):485-94
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Identification of a novel nuclear pore-associated protein as a functional target of the HIV-1 Rev protein in yeast.
Cell. 1995 Aug 11;82(3):495-506
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A human nucleoporin-like protein that specifically interacts with HIV Rev.
Nature. 1995 Aug 10;376(6540):530-3
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Proc Natl Acad Sci U S A. 1995 Aug 1;92(16):7372-5
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FEBS Lett. 1995 Aug 1;369(1):107-12
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A functional p53-responsive intronic promoter is contained within the human mdm2 gene.
Nucleic Acids Res. 1995 Jul 25;23(14):2584-92
PMID: 7651818
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Negative feedback regulation of wild-type p53 biosynthesis.
EMBO J. 1995 Sep 15;14(18):4442-9
PMID: 7556087
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Selective protein degradation: a journey's end within the proteasome.
Cell. 1995 Sep 22;82(6):881-4
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Cell. 1995 Nov 3;83(3):415-22
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Rescue of early embryonic lethality in mdm2-deficient mice by deletion of p53.
Nature. 1995 Nov 9;378(6553):203-6
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Rescue of embryonic lethality in Mdm2-deficient mice by absence of p53.
Nature. 1995 Nov 9;378(6553):206-8
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J Virol. 1995 Dec;69(12):7960-70
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J Virol. 1995 Dec;69(12):8027-34
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Mol Med. 1995 Jan;1(2):142-52
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Eur J Cell Biol. 1995 Oct;68(2):191-8
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Mol Cell Biol. 1996 Aug;16(8):4207-14
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J Virol. 1996 Sep;70(9):6323-35
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J Virol. 1996 Sep;70(9):6442-5
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Protection against apoptosis by the vaccinia virus SPI-2 (B13R) gene product.
J Virol. 1996 Sep;70(9):6479-85
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Amplification of MDM2 inhibits MyoD-mediated myogenesis.
Mol Cell Biol. 1996 Sep;16(9):5048-57
PMID: 8756663
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An RNA-export mediator with an essential nuclear export signal.
Nature. 1996 Sep 26;383(6598):357-60
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The MDM2 oncoprotein binds specifically to RNA through its RING finger domain.
Mol Med. 1996 Jul;2(4):439-51
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p53-dependent cell cycle arrest induced by N-acetyl-L-leucinyl-L-leucinyl-L-norleucinal in platelet-derived growth factor-stimulated human fibroblasts.
Proc Natl Acad Sci U S A. 1996 Oct 1;93(20):10815-9
PMID: 8855263
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Oncogenic potential of the adenovirus E4orf6 protein.
Proc Natl Acad Sci U S A. 1996 Oct 15;93(21):11295-301
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mdm2 deletion does not alter growth characteristics of p53-deficient embryo fibroblasts.
Oncogene. 1996 Oct 17;13(8):1731-6
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Structure of the MDM2 oncoprotein bound to the p53 tumor suppressor transactivation domain.
Science. 1996 Nov 8;274(5289):948-53
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Eur J Cell Biol. 1996 Nov;71(3):311-8
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Identification of a novel p53 functional domain that is necessary for efficient growth suppression.
Proc Natl Acad Sci U S A. 1996 Dec 24;93(26):15335-40
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A genetic approach to mapping the p53 binding site in the MDM2 protein.
Mol Med. 1997 Apr;3(4):248-59
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Nature. 1997 May 15;387(6630):296-9
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Regulation of p53 stability by Mdm2.
Nature. 1997 May 15;387(6630):299-303
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EMBO J. 1997 Jul 16;16(14):4276-84
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Mutant analysis links the translocon and BiP to retrograde protein transport for ER degradation.
Nature. 1997 Aug 28;388(6645):891-5
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Protein synthesis required to anchor a mutant p53 protein which is temperature-sensitive for nuclear transport.
Nature. 1991 Feb 28;349(6312):802-6
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G1/S phosphorylation of the retinoblastoma protein is associated with an altered affinity for the nuclear compartment.
Cell. 1991 May 3;65(3):381-93
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Effector domains of human immunodeficiency virus type 1 Rev and human T-cell leukemia virus type I Rex are functionally interchangeable and share an essential peptide motif.
J Virol. 1991 Nov;65(11):6001-7
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Oncogene. 1991 Nov;6(11):2055-65
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Nature. 1992 Feb 20;355(6362):730-2
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Intracistronic complementation reveals a new function of SV40 T antigen that co-operates with Rb and p53 binding to stimulate DNA synthesis in quiescent cells.
Oncogene. 1992 May;7(5):837-47
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Nature. 1992 May 7;357(6373):82-5
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