Literature DB >> 22693207

The Rab-GTPase-activating protein TBC1D1 regulates skeletal muscle glucose metabolism.

Ferenc Szekeres1, Alexandra Chadt, Robby Z Tom, Atul S Deshmukh, Alexander V Chibalin, Marie Björnholm, Hadi Al-Hasani, Juleen R Zierath.   

Abstract

The Rab-GTPase-activating protein TBC1D1 has emerged as a novel candidate involved in metabolic regulation. Our aim was to determine whether TBC1D1 is involved in insulin as well as energy-sensing signals controlling skeletal muscle metabolism. TBC1D1-deficient congenic B6.SJL-Nob1.10 (Nob1.10(SJL)) and wild-type littermates were studied. Glucose and insulin tolerance, glucose utilization, hepatic glucose production, and tissue-specific insulin-mediated glucose uptake were determined. The effect of insulin, AICAR, or contraction on glucose transport was studied in isolated skeletal muscle. Glucose and insulin tolerance tests were normal in TBC1D1-deficient Nob1.10(SJL) mice, yet the 4-h-fasted insulin concentration was increased. Insulin-stimulated peripheral glucose utilization during a euglycemic hyperinsulinemic clamp was similar between genotypes, whereas the suppression of hepatic glucose production was increased in TBC1D1-deficient mice. In isolated extensor digitorum longus (EDL) but not soleus muscle, glucose transport in response to insulin, AICAR, or contraction was impaired by TBC1D1 deficiency. The reduction in glucose transport in EDL muscle from TBC1D1-deficient Nob1.10(SJL) mice may be explained partly by a 50% reduction in GLUT4 protein, since proximal signaling at the level of Akt, AMPK, and acetyl-CoA carboxylase (ACC) was unaltered. Paradoxically, in vivo insulin-stimulated 2-deoxyglucose uptake was increased in EDL and tibialis anterior muscle from TBC1D1-deficient mice. In conclusion, TBC1D1 plays a role in regulation of glucose metabolism in skeletal muscle. Moreover, functional TBC1D1 is required for AICAR- or contraction-induced metabolic responses, implicating a role in energy-sensing signals.

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Year:  2012        PMID: 22693207     DOI: 10.1152/ajpendo.00605.2011

Source DB:  PubMed          Journal:  Am J Physiol Endocrinol Metab        ISSN: 0193-1849            Impact factor:   4.310


  35 in total

1.  Deletion of the Rab GAP Tbc1d1 modifies glucose, lipid, and energy homeostasis in mice.

Authors:  Stefan R Hargett; Natalie N Walker; Syed S Hussain; Kyle L Hoehn; Susanna R Keller
Journal:  Am J Physiol Endocrinol Metab       Date:  2015-05-26       Impact factor: 4.310

Review 2.  Exercise-stimulated glucose uptake - regulation and implications for glycaemic control.

Authors:  Lykke Sylow; Maximilian Kleinert; Erik A Richter; Thomas E Jensen
Journal:  Nat Rev Endocrinol       Date:  2016-10-14       Impact factor: 43.330

3.  Ablating the protein TBC1D1 impairs contraction-induced sarcolemmal glucose transporter 4 redistribution but not insulin-mediated responses in rats.

Authors:  Jamie Whitfield; Sabina Paglialunga; Brennan K Smith; Paula M Miotto; Genevieve Simnett; Holly L Robson; Swati S Jain; Eric A F Herbst; Eric M Desjardins; David J Dyck; Lawrence L Spriet; Gregory R Steinberg; Graham P Holloway
Journal:  J Biol Chem       Date:  2017-08-14       Impact factor: 5.157

4.  Tbc1d1 deletion suppresses obesity in leptin-deficient mice.

Authors:  J Dokas; A Chadt; H-G Joost; H Al-Hasani
Journal:  Int J Obes (Lond)       Date:  2016-03-22       Impact factor: 5.095

5.  Rab GAPs AS160 and Tbc1d1 play nonredundant roles in the regulation of glucose and energy homeostasis in mice.

Authors:  Stefan R Hargett; Natalie N Walker; Susanna R Keller
Journal:  Am J Physiol Endocrinol Metab       Date:  2015-12-01       Impact factor: 4.310

6.  Enhanced fasting glucose turnover in mice with disrupted action of TUG protein in skeletal muscle.

Authors:  Michael G Löffler; Andreas L Birkenfeld; Katerina M Philbrick; Jonathan P Belman; Estifanos N Habtemichael; Carmen J Booth; Carlos M Castorena; Cheol Soo Choi; Francois R Jornayvaz; Brandon M Gassaway; Hui-Young Lee; Gregory D Cartee; William Philbrick; Gerald I Shulman; Varman T Samuel; Jonathan S Bogan
Journal:  J Biol Chem       Date:  2013-06-06       Impact factor: 5.157

7.  AKT and AMP-activated protein kinase regulate TBC1D1 through phosphorylation and its interaction with the cytosolic tail of insulin-regulated aminopeptidase IRAP.

Authors:  Samaneh Mafakheri; Ralf R Flörke; Sibylle Kanngießer; Sonja Hartwig; Lena Espelage; Christian De Wendt; Tina Schönberger; Nele Hamker; Stefan Lehr; Alexandra Chadt; Hadi Al-Hasani
Journal:  J Biol Chem       Date:  2018-10-01       Impact factor: 5.157

8.  Greater filamin C, GSK3α, and GSK3β serine phosphorylation in insulin-stimulated isolated skeletal muscles of calorie restricted 24 month-old rats.

Authors:  Donel A Sequea; Naveen Sharma; Edward B Arias; Gregory D Cartee
Journal:  Mech Ageing Dev       Date:  2012-12-11       Impact factor: 5.432

9.  A Tbc1d1 Ser231Ala-knockin mutation partially impairs AICAR- but not exercise-induced muscle glucose uptake in mice.

Authors:  Qiaoli Chen; Bingxian Xie; Sangsang Zhu; Ping Rong; Yang Sheng; Serge Ducommun; Liang Chen; Chao Quan; Min Li; Kei Sakamoto; Carol MacKintosh; Shuai Chen; Hong Yu Wang
Journal:  Diabetologia       Date:  2016-11-08       Impact factor: 10.122

Review 10.  Insights into obesity and diabetes at the intersection of mouse and human genetics.

Authors:  Melkam A Kebede; Alan D Attie
Journal:  Trends Endocrinol Metab       Date:  2014-07-15       Impact factor: 12.015

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