Literature DB >> 24895126

Benzothiophene carboxylate derivatives as novel allosteric inhibitors of branched-chain α-ketoacid dehydrogenase kinase.

Shih-Chia Tso, Wen-Jun Gui, Cheng-Yang Wu, Jacinta L Chuang, Xiangbing Qi, Kristen J Skvora, Kenneth Dork, Amy L Wallace, Lorraine K Morlock, Brendan H Lee, Susan M Hutson, Stephen C Strom, Noelle S Williams, Uttam K Tambar, R Max Wynn, David T Chuang.   

Abstract

The mitochondrial branched-chain α-ketoacid dehydrogenase complex (BCKDC) is negatively regulated by reversible phosphorylation.BCKDC kinase (BDK) inhibitors that augment BCKDC flux have been shown to reduce branched-chain amino acid (BCAA) concentrations in vivo. In the present study, we employed high-throughput screens to identify compound 3,6- dichlorobenzo[b]thiophene-2-carboxylic acid (BT2) as a novel BDK inhibitor (IC(50) = 3.19 μM). BT2 binds to the same site in BDK as other known allosteric BDK inhibitors, including (S)-α-cholorophenylproprionate ((S)-CPP). BT2 binding to BDK triggers helix movements in the N-terminal domain, resulting in the dissociation of BDK from the BCKDC accompanied by accelerated degradation of the released kinase in vivo. BT2 shows excellent pharmacokinetics (terminal T(1⁄2) = 730 min) and metabolic stability (no degradation in 240 min), which are significantly better than those of (S)-CPP. BT2, its analog 3-chloro-6-fluorobenzo[ b]thiophene-2-carboxylic acid (BT2F), and a prodrug of BT2 (i.e. N-(4-acetamido-1,2,5-oxadiazol-3-yl)-3,6-dichlorobenzo[ b]thiophene-2-carboxamide (BT3)) significantly increase residual BCKDC activity in cultured cells and primary hepatocytes from patients and a mouse model of maple syrup urine disease. Administration of BT2 at 20 mg/kg/day to wild-type mice for 1 week leads to nearly complete dephosphorylation and maximal activation of BCKDC in heart, muscle, kidneys, and liver with reduction in plasma BCAA concentrations. The availability of benzothiophene carboxylate derivatives as stable BDK inhibitors may prove useful for the treatment of metabolic disease caused by elevated BCAA concentrations.

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Year:  2014        PMID: 24895126      PMCID: PMC4110271          DOI: 10.1074/jbc.M114.569251

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  42 in total

1.  Diagnosis and mutational analysis of maple syrup urine disease using cell cultures.

Authors:  J L Chuang; D T Chuang
Journal:  Methods Enzymol       Date:  2000       Impact factor: 1.600

2.  The C-terminal hinge region of lipoic acid-bearing domain of E2b is essential for domain interaction with branched-chain alpha-keto acid dehydrogenase kinase.

Authors:  Jacinta L Chuang; R Max Wynn; David T Chuang
Journal:  J Biol Chem       Date:  2002-08-19       Impact factor: 5.157

3.  Benzothiophene carboxamide derivatives as inhibitors of Plasmodium falciparum enoyl-ACP reductase.

Authors:  Tanushree Banerjee; Shailendra Kumar Sharma; Neha Kapoor; Vishnu Dwivedi; Namita Surolia; Avadhesha Surolia
Journal:  IUBMB Life       Date:  2011-10-18       Impact factor: 3.885

4.  Plasma amino acid levels and insulin secretion in obesity.

Authors:  P Felig; E Marliss; G F Cahill
Journal:  N Engl J Med       Date:  1969-10-09       Impact factor: 91.245

Review 5.  Mechanisms responsible for regulation of branched-chain amino acid catabolism.

Authors:  Robert A Harris; Mandar Joshi; Nam Ho Jeoung
Journal:  Biochem Biophys Res Commun       Date:  2004-01-09       Impact factor: 3.575

6.  A branched-chain amino acid-related metabolic signature that differentiates obese and lean humans and contributes to insulin resistance.

Authors:  Christopher B Newgard; Jie An; James R Bain; Michael J Muehlbauer; Robert D Stevens; Lillian F Lien; Andrea M Haqq; Svati H Shah; Michelle Arlotto; Cris A Slentz; James Rochon; Dianne Gallup; Olga Ilkayeva; Brett R Wenner; William S Yancy; Howard Eisenson; Gerald Musante; Richard S Surwit; David S Millington; Mark D Butler; Laura P Svetkey
Journal:  Cell Metab       Date:  2009-04       Impact factor: 27.287

7.  Regulation of branched-chain alpha-ketoacid dehydrogenase kinase.

Authors:  R Paxton; R A Harris
Journal:  Arch Biochem Biophys       Date:  1984-05-15       Impact factor: 4.013

8.  Hepatocyte transplantation improves phenotype and extends survival in a murine model of intermediate maple syrup urine disease.

Authors:  Kristen J Skvorak; Harbhajan S Paul; Kenneth Dorko; Fabio Marongiu; Ewa Ellis; Donald Chace; Carolyn Ferguson; K Michael Gibson; Gregg E Homanics; Stephen C Strom
Journal:  Mol Ther       Date:  2009-05-12       Impact factor: 11.454

9.  Production and characterization of murine models of classic and intermediate maple syrup urine disease.

Authors:  Gregg E Homanics; Kristen Skvorak; Carolyn Ferguson; Simon Watkins; Harbhajan S Paul
Journal:  BMC Med Genet       Date:  2006-03-31       Impact factor: 2.103

10.  Branched-chain and aromatic amino acids are predictors of insulin resistance in young adults.

Authors:  Peter Würtz; Pasi Soininen; Antti J Kangas; Tapani Rönnemaa; Terho Lehtimäki; Mika Kähönen; Jorma S Viikari; Olli T Raitakari; Mika Ala-Korpela
Journal:  Diabetes Care       Date:  2012-11-05       Impact factor: 19.112

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  24 in total

1.  Catabolic Defect of Branched-Chain Amino Acids Promotes Heart Failure.

Authors:  Haipeng Sun; Kristine C Olson; Chen Gao; Domenick A Prosdocimo; Meiyi Zhou; Zhihua Wang; Darwin Jeyaraj; Ji-Youn Youn; Shuxun Ren; Yunxia Liu; Christoph D Rau; Svati Shah; Olga Ilkayeva; Wen-Jun Gui; Noelle S William; R Max Wynn; Christopher B Newgard; Hua Cai; Xinshu Xiao; David T Chuang; Paul Christian Schulze; Christopher Lynch; Mukesh K Jain; Yibin Wang
Journal:  Circulation       Date:  2016-04-08       Impact factor: 29.690

2.  Quantitative Analysis of the Whole-Body Metabolic Fate of Branched-Chain Amino Acids.

Authors:  Michael D Neinast; Cholsoon Jang; Sheng Hui; Danielle S Murashige; Qingwei Chu; Raphael J Morscher; Xiaoxuan Li; Le Zhan; Eileen White; Tracy G Anthony; Joshua D Rabinowitz; Zoltan Arany
Journal:  Cell Metab       Date:  2018-11-15       Impact factor: 27.287

3.  Branched-Chain Amino Acid Metabolism in the Failing Heart.

Authors:  Qutuba G Karwi; Gary D Lopaschuk
Journal:  Cardiovasc Drugs Ther       Date:  2022-02-12       Impact factor: 3.727

Review 4.  Branched-chain amino acids in cardiovascular disease.

Authors:  Robert W McGarrah; Phillip J White
Journal:  Nat Rev Cardiol       Date:  2022-09-05       Impact factor: 49.421

5.  Loss of BCAA Catabolism during Carcinogenesis Enhances mTORC1 Activity and Promotes Tumor Development and Progression.

Authors:  Russell E Ericksen; Siew Lan Lim; Eoin McDonnell; Wai Ho Shuen; Maya Vadiveloo; Phillip J White; Zhaobing Ding; Royston Kwok; Philip Lee; George K Radda; Han Chong Toh; Matthew D Hirschey; Weiping Han
Journal:  Cell Metab       Date:  2019-01-17       Impact factor: 27.287

6.  Circulating metabolite homeostasis achieved through mass action.

Authors:  Xiaoxuan Li; Sheng Hui; Emily T Mirek; William O Jonsson; Tracy G Anthony; Won Dong Lee; Xianfeng Zeng; Cholsoon Jang; Joshua D Rabinowitz
Journal:  Nat Metab       Date:  2022-01-20

7.  Genetic Predisposition to an Impaired Metabolism of the Branched-Chain Amino Acids and Risk of Type 2 Diabetes: A Mendelian Randomisation Analysis.

Authors:  Luca A Lotta; Robert A Scott; Stephen J Sharp; Stephen Burgess; Jian'an Luan; Therese Tillin; Amand F Schmidt; Fumiaki Imamura; Isobel D Stewart; John R B Perry; Luke Marney; Albert Koulman; Edward D Karoly; Nita G Forouhi; Rasmus J O Sjögren; Erik Näslund; Juleen R Zierath; Anna Krook; David B Savage; Julian L Griffin; Nishi Chaturvedi; Aroon D Hingorani; Kay-Tee Khaw; Inês Barroso; Mark I McCarthy; Stephen O'Rahilly; Nicholas J Wareham; Claudia Langenberg
Journal:  PLoS Med       Date:  2016-11-29       Impact factor: 11.069

8.  Malignant manipulaTORs of metabolism: suppressing BCAA catabolism to enhance mTORC1 activity.

Authors:  Russell E Ericksen; Weiping Han
Journal:  Mol Cell Oncol       Date:  2019-03-20

9.  Therapeutic Effect of Targeting Branched-Chain Amino Acid Catabolic Flux in Pressure-Overload Induced Heart Failure.

Authors:  Mengping Chen; Chen Gao; Jiayu Yu; Shuxun Ren; Menglong Wang; R Max Wynn; David T Chuang; Yibin Wang; Haipeng Sun
Journal:  J Am Heart Assoc       Date:  2019-06-01       Impact factor: 5.501

10.  The BCKDH Kinase and Phosphatase Integrate BCAA and Lipid Metabolism via Regulation of ATP-Citrate Lyase.

Authors:  Phillip J White; Robert W McGarrah; Paul A Grimsrud; Shih-Chia Tso; Wen-Hsuan Yang; Jonathan M Haldeman; Thomas Grenier-Larouche; Jie An; Amanda L Lapworth; Inna Astapova; Sarah A Hannou; Tabitha George; Michelle Arlotto; Lyra B Olson; Michelle Lai; Guo-Fang Zhang; Olga Ilkayeva; Mark A Herman; R Max Wynn; David T Chuang; Christopher B Newgard
Journal:  Cell Metab       Date:  2018-05-17       Impact factor: 31.373

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