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    Please use this identifier to cite or link to this item: https://ir.csmu.edu.tw:8080/ir/handle/310902500/11697


    Title: Fumarate Analogs Act as Allosteric Inhibitors of the Human Mitochondrial NAD(P)+-Dependent Malic Enzyme
    Authors: Hsieh, Ju-Yi
    Liu, Jyung-Hurng
    Yang, Pai-Chun
    Lin, Chi-Li
    Liu, Guang-Yaw
    Hung, Hui-Chih
    Contributors: 中山醫學大學
    Date: 2014
    Issue Date: 2015-07-28T04:04:05Z (UTC)
    ISSN: 1932-6203
    Abstract: Human mitochondrial NAD(P)+-dependent malic enzyme (m-NAD(P)-ME) is allosterically activated by the four-carbon trans dicarboxylic acid, fumarate. Previous studies have suggested that the dicarboxylic acid in a trans conformation around the carbon-carbon double bond is required for the allosteric activation of the enzyme. In this paper, the allosteric effects of fumarate analogs on m-NAD(P)-ME are investigated. Two fumarate-insensitive mutants, m-NAD(P)-ME_R67A/R91A and m-NAD(P)-ME_K57S/E59N/K73E/D102S, as well as c-NADP-ME, were used as the negative controls. Among these analogs, mesaconate, trans-aconitate, monomethyl fumarate and monoethyl fumarate were allosteric activators of the enzyme, while oxaloacetate, diethyl oxalacetate, and dimethyl fumarate were found to be allosteric inhibitors of human m-NAD(P)-ME. The IC50 value for diethyl oxalacetate was approximately 2.5 mM. This paper suggests that the allosteric inhibitors may impede the conformational change from open form to closed form and therefore inhibit m-NAD(P)-ME enzyme activity.
    URI: https://ir.csmu.edu.tw:8080/ir/handle/310902500/11697
    http://dx.doi.org/10.1371/journal.pone.0098385
    Relation: PLoS ONE 9(6): e98385.
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