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    Date Issued2016 (1)2010 (1)Author
    Simon, Andrew (2)
    Akbarian, Schahram (1)Carruthers, Anthony (1)Cheung, Iris (1)Connor, Caroline M. (1)View MoreUMass Chan AffiliationDepartment of Biochemistry and Molecular Pharmacology (2)Brudnick Neuropsychiatric Research Institute, Department of Psychiatry (1)Program in Bioinformatics and Integrative Biology (1)UMass Metabolic Network (1)Document TypeJournal Article (2)KeywordAmino Acid Sequence; Antibodies; *Antibody Specificity; Cells, Cultured; Chromatin; Chromatin Immunoprecipitation; Histones; Methylation; Transcription Initiation Site (1)Biochemistry (1)Cell Biology (1)Cellular and Molecular Physiology (1)competitive inhibition (1)View MoreJournalEpigenetics : official journal of the DNA Methylation Society (1)The Journal of biological chemistry (1)

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    WZB117 (2-Fluoro-6-(m-hydroxybenzoyloxy) Phenyl m-Hydroxybenzoate) Inhibits GLUT1-mediated Sugar Transport by Binding Reversibly at the Exofacial Sugar Binding Site

    Ojelabi, Ogooluwa A.; Lloyd, Kenneth P.; Simon, Andrew; De Zutter, Julie K.; Carruthers, Anthony (2016-12-23)
    WZB117 (2-fluoro-6-(m-hydroxybenzoyloxy) phenyl m-hydroxybenzoate) inhibits passive sugar transport in human erythrocytes and cancer cell lines and, by limiting glycolysis, inhibits tumor growth in mice. This study explores how WZB117 inhibits the erythrocyte sugar transporter glucose transport protein 1 (GLUT1) and examines the transporter isoform specificity of inhibition. WZB117 reversibly and competitively inhibits erythrocyte 3-O-methylglucose (3MG) uptake with Ki(app) = 6 mum but is a noncompetitive inhibitor of sugar exit. Cytochalasin B (CB) is a reversible, noncompetitive inhibitor of 3MG uptake with Ki(app) = 0.3 mum but is a competitive inhibitor of sugar exit indicating that WZB117 and CB bind at exofacial and endofacial sugar binding sites, respectively. WZB117 inhibition of GLUTs expressed in HEK293 cells follows the order of potency: insulin-regulated GLUT4 - GLUT1 - neuronal GLUT3. This may explain WZB117-induced murine lipodystrophy. Molecular docking suggests the following. 1) The WZB117 binding envelopes of exofacial GLUT1 and GLUT4 conformers differ significantly. 2) GLUT1 and GLUT4 exofacial conformers present multiple, adjacent glucose binding sites that overlap with WZB117 binding envelopes. 3) The GLUT1 exofacial conformer lacks a CB binding site. 4) The inward GLUT1 conformer presents overlapping endofacial WZB117, d-glucose, and CB binding envelopes. Interrogating the GLUT1 mechanism using WZB117 reveals that subsaturating WZB117 and CB stimulate erythrocyte 3MG uptake. Extracellular WZB117 does not affect CB binding to GLUT1, but intracellular WZB117 inhibits CB binding. These findings are incompatible with the alternating conformer carrier for glucose transport but are consistent with either a multisubunit, allosteric transporter, or a transporter in which each subunit presents multiple, interacting ligand binding sites.
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    A simple method for improving the specificity of anti-methyl histone antibodies

    Connor, Caroline M.; Cheung, Iris; Simon, Andrew; Jakovcevski, Mira; Weng, Zhiping; Akbarian, Schahram (2010-07-01)
    Antibodies differentiating between the mono-, di- and trimethylated forms of specific histone lysine residues are a critical tool in epigenome research, but show variable specificity, potentially limiting comparisons across studies and between samples. Using trimethyl histone H3 lysine 4 (H3K4me3)-a mark enriched at transcription start sites (TSS) of active genes-as an example, we describe how simple co-incubation with synthetic peptide of the K4me2 modification leads to increased specificity for K4me3 and a much sharper peak distribution proximal to TSS following chromatin immunoprecipitation and massively parallel sequencing (ChIP-Seq).
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