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We are analyzing https://link.springer.com/article/10.1007/s11010-011-1212-8.

Title:
Expression and role in glycolysis of human ADP-dependent glucokinase | Molecular and Cellular Biochemistry
Description:
A novel murine enzyme, ADP-dependent glucokinase (ADPGK), has been shown to catalyse glucose phosphorylation using ADP as phosphoryl donor. The ancestral ADPGK gene appears to have been laterally transferred from Archaea early in metazoan evolution, but its biological role has not been established. Here, we undertake an initial investigation of the functional properties of human ADPGK in human tumour cell lines and specifically test the hypothesis that ADPGK might prime glycolysis using ADP under stress conditions such as hypoxia. Recombinant human ADPGK was confirmed to catalyse ADP-dependent glucose phosphorylation in vitro, with an apparent K M for glucose of 0.29 mM. Expression databases and western blotting of surgical samples demonstrated high expression in many human tissues, including tumours. Unlike hexokinase-2 (HK2), RNAi studies with exon arrays showed that ADPGK is not a transcriptional target of hypoxia inducible factor-1. Consistent with this, ADPGK protein was not upregulated by hypoxia or anoxia. Surprisingly, stable fivefold overexpression of ADPGK in H460 or HCT116 cells had no apparent effect on proliferation or glycolysis, and did not rescue clonogenicity or glycolysis when HK2 was suppressed by siRNA. Furthermore, suppression of ADPGK by siRNA did not cause detectable inhibition of glycolysis or cell killing by anoxia, although it did induce a statistically significant decrease in plating efficiency of H460 cells under aerobic conditions. Thus, human ADPGK catalyses ADP-dependent phosphorylation of glucose in vitro, but despite its high expression in human tumour cell lines it appears not to make a quantifiable contribution to glycolysis under the conditions evaluated.
Website Age:
28 years and 1 months (reg. 1997-05-29).

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  • Education
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What CMS is link.springer.com built with?

Custom-built

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🌠 Phenomenal Traffic: 5M - 10M visitors per month


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Keywords {🔍}

article, google, scholar, pubmed, cas, cancer, human, hexokinase, cell, adpdependent, expression, glycolysis, glucokinase, adpgk, glucose, gene, cells, tumor, res, molecular, access, biol, biochem, auckland, research, role, richter, wilson, conditions, hypoxia, hypoxic, privacy, cookies, content, high, genes, mol, nature, zealand, data, publish, search, phosphorylation, rnai, aerobic, metabolic, progression, open, metabolism, identification,

Topics {✒️}

2-deoxy-d-glucose versus 2-fluorodeoxy-d-glucose involves adp-dependent kinases human adp-dependent glucokinase month download article/chapter mouse adp-dependent glucokinase exon arrays showed adp-dependent glucokinase fret-based glucose nanosensor human protein-encoding transcriptomes gene expression profiles bioreductive prodrug pr-104a cancer cell metabolism catalyse glucose phosphorylation human hexokinase ii full article pdf 5-thio-d-glucose promotes tumor growth full-genome rnai profiling related subjects hypoxia-induced factors vertebrate hexokinase gene hypoxia inducible factor-1 hypoxia-inducible factor 1 privacy choices/manage cookies adp-dependent breast cancer reveal cancer metabolism array replicate spots hif-1-dependent regulation cell-specific roles adpgk/hk2 rnai studies low glucose mimetic human glioblastoma multiforme vertebrate hexokinase family intracellular glucose imaged multiclass cancer diagnosis stable fivefold overexpression assessing differential expression stable rna interference sutherland-smith & kathryn article molecular check access instant access cellular biochemistry aims multiple molecular pathways tumor suppressor genes european economic area statistically significant decrease de vos wm embden-meyerhof pathway

Schema {🗺️}

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         headline:Expression and role in glycolysis of human ADP-dependent glucokinase
         description:A novel murine enzyme, ADP-dependent glucokinase (ADPGK), has been shown to catalyse glucose phosphorylation using ADP as phosphoryl donor. The ancestral ADPGK gene appears to have been laterally transferred from Archaea early in metazoan evolution, but its biological role has not been established. Here, we undertake an initial investigation of the functional properties of human ADPGK in human tumour cell lines and specifically test the hypothesis that ADPGK might prime glycolysis using ADP under stress conditions such as hypoxia. Recombinant human ADPGK was confirmed to catalyse ADP-dependent glucose phosphorylation in vitro, with an apparent K M for glucose of 0.29 mM. Expression databases and western blotting of surgical samples demonstrated high expression in many human tissues, including tumours. Unlike hexokinase-2 (HK2), RNAi studies with exon arrays showed that ADPGK is not a transcriptional target of hypoxia inducible factor-1. Consistent with this, ADPGK protein was not upregulated by hypoxia or anoxia. Surprisingly, stable fivefold overexpression of ADPGK in H460 or HCT116 cells had no apparent effect on proliferation or glycolysis, and did not rescue clonogenicity or glycolysis when HK2 was suppressed by siRNA. Furthermore, suppression of ADPGK by siRNA did not cause detectable inhibition of glycolysis or cell killing by anoxia, although it did induce a statistically significant decrease in plating efficiency of H460 cells under aerobic conditions. Thus, human ADPGK catalyses ADP-dependent phosphorylation of glucose in vitro, but despite its high expression in human tumour cell lines it appears not to make a quantifiable contribution to glycolysis under the conditions evaluated.
         datePublished:2012-01-05T00:00:00Z
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            Hypoxia
            siRNA
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            Exon arrays
            Biochemistry
            general
            Cardiology
            Cancer Research
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      headline:Expression and role in glycolysis of human ADP-dependent glucokinase
      description:A novel murine enzyme, ADP-dependent glucokinase (ADPGK), has been shown to catalyse glucose phosphorylation using ADP as phosphoryl donor. The ancestral ADPGK gene appears to have been laterally transferred from Archaea early in metazoan evolution, but its biological role has not been established. Here, we undertake an initial investigation of the functional properties of human ADPGK in human tumour cell lines and specifically test the hypothesis that ADPGK might prime glycolysis using ADP under stress conditions such as hypoxia. Recombinant human ADPGK was confirmed to catalyse ADP-dependent glucose phosphorylation in vitro, with an apparent K M for glucose of 0.29 mM. Expression databases and western blotting of surgical samples demonstrated high expression in many human tissues, including tumours. Unlike hexokinase-2 (HK2), RNAi studies with exon arrays showed that ADPGK is not a transcriptional target of hypoxia inducible factor-1. Consistent with this, ADPGK protein was not upregulated by hypoxia or anoxia. Surprisingly, stable fivefold overexpression of ADPGK in H460 or HCT116 cells had no apparent effect on proliferation or glycolysis, and did not rescue clonogenicity or glycolysis when HK2 was suppressed by siRNA. Furthermore, suppression of ADPGK by siRNA did not cause detectable inhibition of glycolysis or cell killing by anoxia, although it did induce a statistically significant decrease in plating efficiency of H460 cells under aerobic conditions. Thus, human ADPGK catalyses ADP-dependent phosphorylation of glucose in vitro, but despite its high expression in human tumour cell lines it appears not to make a quantifiable contribution to glycolysis under the conditions evaluated.
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      dateModified:2012-01-05T00:00:00Z
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         ADP-dependent glucokinase
         Glycolysis
         Hypoxia
         siRNA
         Hexokinase-2
         Exon arrays
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         general
         Cardiology
         Cancer Research
         Medical Biochemistry
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      name:Dept of Molecular Medicine and Pathology, Faculty of Medical and Health Sciences, The University of Auckland, Auckland, New Zealand
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