Search Results - "Wallace, Maura"
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Dual-Site Regulation of MDM2 E3-Ubiquitin Ligase Activity
Published in Molecular cell (21-07-2006)“…The control of p53 ubiquitination by MDM2 provides a model system to define how an E3-ligase functions on a conformationally flexible substrate. The mechanism…”
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2
MDM2 Chaperones the p53 Tumor Suppressor
Published in The Journal of biological chemistry (09-11-2007)“…The murine double minute (mdm2) gene encodes an E3 ubiquitin ligase that plays a key role in the degradation of p53 tumor suppressor protein. Nevertheless…”
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3
Role of Mdm2 acid domain interactions in recognition and ubiquitination of the transcription factor IRF-2
Published in Biochemical journal (15-03-2009)“…Mdm2 (murine double minute 2)-mediated ubiquitination of the p53 tumour suppressor requires interaction of the ligase at two distinct binding sites that form…”
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4
Interferon Regulatory Factor 1 Binding to p300 Stimulates DNA-Dependent Acetylation of p53
Published in Molecular and Cellular Biology (01-11-2004)“…Article Usage Stats Services MCB Citing Articles Google Scholar PubMed Related Content Social Bookmarking CiteULike Delicious Digg Facebook Google+ Mendeley…”
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5
The conformationally flexible S9-S10 linker region in the core domain of p53 contains a novel MDM2 binding site whose mutation increases ubiquitination of p53 in vivo
Published in The Journal of biological chemistry (09-08-2002)“…Although the N-terminal BOX-I domain of the tumor suppressor protein p53 contains the primary docking site for MDM2, previous studies demonstrated that RNA…”
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6
Docking-Dependent Regulation of the Rb Tumor Suppressor Protein by Cdk4
Published in Molecular and Cellular Biology (01-06-2004)“…Article Usage Stats Services MCB Citing Articles Google Scholar PubMed Related Content Social Bookmarking CiteULike Delicious Digg Facebook Google+ Mendeley…”
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7
Non-degradative ubiquitination of the Notch1 receptor by the E3 ligase MDM2 activates the Notch signalling pathway
Published in Biochemical journal (15-03-2013)“…The Notch receptor is necessary for modulating cell fate decisions throughout development, and aberrant activation of Notch signalling has been associated with…”
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8
MDM2 protein-mediated ubiquitination of numb protein: identification of a second physiological substrate of MDM2 that employs a dual-site docking mechanism
Published in The Journal of biological chemistry (20-04-2012)“…The E3 ubiquitin ligase, MDM2, uses a dual-site mechanism to ubiquitinate and degrade the tumor suppressor protein p53, involving interactions with the…”
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9
MDM2 regulates a novel form of incomplete neoplastic transformation of Theileria parva infected lymphocytes
Published in Experimental and molecular pathology (01-02-2013)“…Our efforts are concerned with identifying features of incomplete malignant transformation caused by non viral pathogens. Theileria parva (T. parva) is a…”
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10
MDM2 Protein-mediated Ubiquitination of NUMB Protein
Published in The Journal of biological chemistry (20-04-2012)“…The E3 ubiquitin ligase, MDM2, uses a dual-site mechanism to ubiquitinate and degrade the tumor suppressor protein p53, involving interactions with the…”
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11
Human herpesvirus-6B protein U19 contains a p53 BOX I homology motif for HDM2 binding and p53 stabilization
Published in Virology (New York, N.Y.) (05-01-2014)“…Abstract In order to establish a successful infection, it is of crucial importance for invading viruses to alter the activities of the regulatory protein p53…”
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12
ATP stimulates MDM2-mediated inhibition of the DNA-binding function of E2F1
Published in The FEBS journal (01-10-2008)“…Murine double minute 2 (MDM2) protein exhibits many diverse biochemical functions on the tumour suppressor protein p53, including transcriptional suppression…”
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13
On the Mechanism of Sequence-specific DNA-dependent Acetylation of p53: The Acetylation Motif is Exposed upon DNA Binding
Published in Journal of molecular biology (24-03-2006)“…P53 acetylation requires p300-docking to two contiguous sites in the activation domain that in turn mediates DNA-dependent acetylation of the tetramer. In an…”
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14
Destabilizing missense mutations in the tumour suppressor protein p53 enhance its ubiquitination in vitro and in vivo
Published in Biochemical journal (15-07-2006)“…p53 ubiquitination catalysed by MDM2 (murine double minute clone 2 oncoprotein) provides a biochemical assay to dissect stages in E3-ubiquitin-ligase-catalysed…”
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15
Synergistic activation of p53-dependent transcription by two cooperating damage recognition pathways
Published in Oncogene (10-08-2000)“…High level activation of p53-dependent transcription occurs following cellular exposure to genotoxic damaging agents such as UV-C, while ionizing radiation…”
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16
The Conformationally Flexible S9âS10 Linker Region in the Core Domain of p53 Contains a Novel MDM2 Binding Site Whose Mutation Increases Ubiquitination of p53 in Vivo
Published in The Journal of biological chemistry (09-08-2002)“…Although the N-terminal BOX-I domain of the tumor suppressor protein p53 contains the primary docking site for MDM2, previous studies demonstrated that RNA…”
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17
Denaturing gradient gel electrophoresis: a novel method for determining Rh phenotype from genomic DNA
Published in British journal of haematology (01-08-1996)“…Denaturing gradient gel electrophoresis (DGGE) was carried out on PCR products amplified from exons 2 and 5 of RHD and RHCE. Exon 2 of RHD and exon 2 of the C…”
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18
Craniolateral approach to the humerus with transection of the brachialis muscle
Published in Veterinary surgery (01-09-1991)Get more information
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19
Mechanical evaluation of three methods of plating distal radial osteotomies
Published in Veterinary surgery (01-03-1992)“…Eighteen intact canine cadaver radii underwent nondestructive axial testing, and were osteotomized, plated, and retested. Each bone was tested with and without…”
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20
Craniolateral approach to the humerus with transection of the brachialis muscle
Published in Veterinary surgery (01-03-1991)“…Six fractures of the midshaft or distal third of the humerus were repaired through a modified craniolateral approach in which the brachialis muscle was…”
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