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Pyruvate dehydrogenase kinase-4 structures reveal a metastable open conformation fostering robust core-free basal activity.

Wynn RM, Kato M, Chuang JL, Tso SC, Li J, Chuang DT

J Biol Chem. 2008 Sep 12; 283(37):25305-15

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James K Stoops, University of Texas at Houston Medical School, TX, USA. F1000 Structural Biology

08 Aug 2008 | New Finding, Novel Drug Target

The x-ray structures of the human pyruvate dehydrogenase kinase 4 (PDK4) determined by these authors offers a potential target for structural-based inhibitors.

PDK4 is over-expressed in skeletal muscle in type 2 diabetes resulting in impaired glucose utilization.

The structures of PDK4 with ADP bound reveal a wider active-site cleft compared to the closed conformation of PDK2. The more open conformation is responsible for its robust basal activity and its more significant role in diabetes.

Competing interests: None declared

Stoops J: "The x-ray structures of the human pyruvate dehydrogenase kinase 4 (PDK4) determined by these authors..." Evaluation of: [Wynn RM et al. Pyruvate dehydrogenase kinase-4 structures reveal a metastable open conformation fostering robust core-free basal activity. J Biol Chem. 2008 Sep 12; 283(37):25305-15; doi: 10.1074/jbc.M802249200]. Faculty of 1000, 08 Aug 2008. F1000.com/1119015#eval575146

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Stoops J: 2008. F1000.com/1119015#eval575146

Faculty of 1000 evaluations, dissents and comments for [Wynn RM et al. Pyruvate dehydrogenase kinase-4 structures reveal a metastable open conformation fostering robust core-free basal activity. J Biol Chem. 2008 Sep 12; 283(37):25305-15; doi: 10.1074/jbc.M802249200]. Faculty of 1000, 08 Aug 2008. F1000.com/1119015

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Faculty of 1000: 2008. F1000.com/1119015

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Human pyruvate dehydrogenase complex (PDC) is down-regulated by pyruvate dehydrogenase kinase (PDK) isoforms 1-4. PDK4 is overexpressed in skeletal muscle in type 2 diabetes, resulting in impaired glucose utilization. Here we show that human PDK4 has robust core-free basal activity, which is considerably higher than activity levels of other PDK isoforms stimulated by the PDC core. PDK4 binds the L3 lipoyl domain, but its activity is not significantly stimulated by any individual lipoyl domains or the core of PDC. The 2.0-A crystal structures of the PDK4 dimer with bound ADP reveal an open conformation with a wider active-site cleft, compared with that in the closed conformation epitomized by the PDK2-ADP structure. The open conformation in PDK4 shows partially ordered C-terminal cross-tails, in which the conserved DW (Asp(394)-Trp(395)) motif from one subunit anchors to the N-terminal domain of the other subunit. The open conformation fosters a reduced binding affinity for ADP, facilitating the efficient removal of product inhibition by this nucleotide. Alteration or deletion of the DW-motif disrupts the C-terminal cross-tail anchor, resulting in the closed conformation and the nearly complete inactivation of PDK4. Fluorescence quenching and enzyme activity data suggest that compounds AZD7545 and dichloroacetate lock PDK4 in the open and the closed conformational states, respectively. We propose that PDK4 with bound ADP exists in equilibrium between the open and the closed conformations. The favored metastable open conformation is responsible for the robust basal activity of PDK4 in the absence of the PDC core.

DOI: 10.1074/jbc.M802249200

PMID: 18658136

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