Literature DB >> 15491151

Pyruvate dehydrogenase kinase isoform 2 activity stimulated by speeding up the rate of dissociation of ADP.

Haiying Bao1, Shane A Kasten, Xiaohua Yan, Yasuaki Hiromasa, Thomas E Roche.   

Abstract

Pyruvate dehydrogenase kinase 2 (PDK2) activity is stimulated by NADH and NADH plus acetyl-CoA via the reduction and reductive acetylation of the lipoyl groups of the dihydrolipoyl acetyltransferase (E2) component. Elevated K(+) and Cl(-) were needed for significant stimulation. Stimulation substantially increased both k(cat) and the K(m) for ATP; the fractional stimulation increased with the level of ATP. With an E2 structure lacking the pyruvate dehydrogenase (E1) binding domain, stimulation of PDK2 was retained, the K(m) for E1 decreased, and the equilibrium dissociation constant for ATP increased but remained much lower than the K(m) for ATP. Stimulation of PDK2 activity greatly reduced the fraction of bound ADP. These results fit an ordered reaction mechanism with ATP binding before E1 and stimulation increasing the rate of dissociation of ADP. Conversion of all of the lipoyl groups in the E2 60mer to the oxidized form (E2(ox)) greatly reduced k(cat) and the K(m) of PDK2 for ATP. Retention over an extended period of time of a low portion of reduced lipoyl groups maintains E2 in a state that supported much higher PDK2 activity than short-term (5 min) reduction of a large portion of lipoyl groups of E2(ox), but reduction of E2(ox) produced a larger fold stimulation. Reduction and to a greater extent reductive acetylation increased PDK2 binding to E2; conversion to E2(ox) did not significantly hinder binding. We suggest that passing even limited reducing equivalents among lipoyl groups maintains E2 lipoyl domains in a conformation that aids kinase function.

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Year:  2004        PMID: 15491151     DOI: 10.1021/bi0494875

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  9 in total

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Review 2.  Redox signaling and protein phosphorylation in mitochondria: progress and prospects.

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Authors:  Alla Klyuyeva; Alina Tuganova; Kirill M Popov
Journal:  Biochemistry       Date:  2008-07-16       Impact factor: 3.162

4.  Structural basis for inactivation of the human pyruvate dehydrogenase complex by phosphorylation: role of disordered phosphorylation loops.

Authors:  Masato Kato; R Max Wynn; Jacinta L Chuang; Shih-Chia Tso; Mischa Machius; Jun Li; David T Chuang
Journal:  Structure       Date:  2008-12-10       Impact factor: 5.006

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

Authors:  R Max Wynn; Masato Kato; Jacinta L Chuang; Shih-Chia Tso; Jun Li; David T Chuang
Journal:  J Biol Chem       Date:  2008-07-24       Impact factor: 5.157

6.  Detailed evaluation of pyruvate dehydrogenase complex inhibition in simulated exercise conditions.

Authors:  Bodhi A Jelinek; Michael A Moxley
Journal:  Biophys J       Date:  2021-01-28       Impact factor: 4.033

7.  Asp295 stabilizes the active-site loop structure of pyruvate dehydrogenase, facilitating phosphorylation of ser292 by pyruvate dehydrogenase-kinase.

Authors:  Tripty A Hirani; Alejandro Tovar-Méndez; Ján A Miernyk; Douglas D Randall
Journal:  Enzyme Res       Date:  2011-01-17

8.  The Aspergillus nidulans Pyruvate Dehydrogenase Kinases Are Essential To Integrate Carbon Source Metabolism.

Authors:  Laure Nicolas Annick Ries; Leandro José de Assis; Fernando José Santos Rodrigues; Camila Caldana; Marina Campos Rocha; Iran Malavazi; Özgür Bayram; Gustavo H Goldman
Journal:  G3 (Bethesda)       Date:  2018-07-02       Impact factor: 3.154

9.  Pharmacologic Reprogramming Designed to Induce a Warburg Effect in Porcine Fetal Fibroblasts Alters Gene Expression and Quantities of Metabolites from Conditioned Media Without Increased Cell Proliferation.

Authors:  Bethany R Mordhorst; Stephanie L Murphy; Rence M Ross; Melissa S Samuel; Shirley Rojas Salazar; Tieming Ji; Susanta K Behura; Kevin D Wells; Jonathan A Green; Randall S Prather
Journal:  Cell Reprogram       Date:  2018-02       Impact factor: 1.987

  9 in total

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