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PMID: 24879834 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The adaptor protein APPL2 inhibits insulin-stimulated glucose uptake by interacting with TBC1D1 in skeletal muscle.

Diabetes ·Vol. 63 ·No. 11 ·2014-11-00 ·页码 3748-58

Cheng KK, Zhu W, Chen B, Wang Y, Wu D, Sweeney G, Wang B, Lam KS, Xu A

Abstract

Insulin stimulates glucose uptake by promoting the trafficking of GLUT4 to the plasma membrane in muscle cells, and impairment of this insulin action contributes to hyperglycemia in type 2 diabetes. The adaptor protein APPL1 potentiates insulin-stimulated Akt activation and downstream actions. However, the physiological functions of APPL2, a close homolog of APPL1, in regulating glucose metabolism remain elusive. We show that insulin-evoked plasma membrane recruitment of GLUT4 and glucose uptake are impaired by APPL2 overexpression but enhanced by APPL2 knockdown. Likewise, conditional deletion of APPL2 in skeletal muscles enhances insulin sensitivity, leading to an improvement in glucose tolerance. We identified the Rab-GTPase-activating protein TBC1D1 as an interacting partner of APPL2. Insulin stimulates TBC1D1 phosphorylation on serine 235, leading to enhanced interaction with the BAR domain of APPL2, which in turn suppresses insulin-evoked TBC1D1 phosphorylation on threonine 596 in cultured myotubes and skeletal muscle. Substitution of serine 235 with alanine diminishes APPL2-mediated inhibition on insulin-dependent TBC1D1 phosphorylation on threonine 596 and the suppressive effects of TBC1D1 on insulin-induced glucose uptake and GLUT4 translocation to the plasma membrane in cultured myotubes. Therefore, the APPL2-TBC1D1 interaction is a key step to fine tune insulin-stimulated glucose uptake by regulating the membrane recruitment of GLUT4 in skeletal muscle.

MeSH 主题词
Adaptor Proteins, Signal Transducing/genetics,metabolism Animals Biological Transport/drug effects Cell Line Glucose/metabolism Humans Immunoprecipitation Insulin/pharmacology Mass Spectrometry Mice Mice, Knockout Mice, Transgenic Muscle, Skeletal/drug effects,metabolism Phosphorylation/drug effects RNA Interference
化学物质
APPL1 protein, human APPL2 protein, human Adaptor Proteins, Signal Transducing Appl1 protein, mouse Insulin Glucose
作者与单位
共 9 位作者,点击展开单位 / ORCID
Cheng Kenneth K Y
State Key Laboratory of Pharmaceutical Biotechnology, The University of Hong Kong, Hong Kong Department of Medicine, The University of Hong Kong, Hong Kong amxu@hku.hk dorncky@hku.hk.
Zhu Weidong
Department of Medicine, The University of Hong Kong, Hong Kong.
Chen Bin
Department of Medicine, The University of Hong Kong, Hong Kong.
Wang Yu
State Key Laboratory of Pharmaceutical Biotechnology, The University of Hong Kong, Hong Kong Department of Pharmacology & Pharmacy, The University of Hong Kong, Hong Kong.
Wu Donghai
The Key Laboratory of Regenerative Biology, Guangzhou Institute of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China.
Sweeney Gary
Department of Biology, York University, Toronto, Ontario, Canada.
Wang Baile
State Key Laboratory of Pharmaceutical Biotechnology, The University of Hong Kong, Hong Kong Department of Medicine, The University of Hong Kong, Hong Kong.
Lam Karen S L
State Key Laboratory of Pharmaceutical Biotechnology, The University of Hong Kong, Hong Kong Department of Medicine, The University of Hong Kong, Hong Kong.
Xu Aimin
State Key Laboratory of Pharmaceutical Biotechnology, The University of Hong Kong, Hong Kong Department of Medicine, The University of Hong Kong, Hong Kong Department of Pharmacology & Pharmacy, The University of Hong Kong, Hong Kong amxu@hku.hk dorncky@hku.hk.
Article Info
Journal
Diabetes
Abbr.
Diabetes
ISSN
1939-327X
Corresponding email
Published
2014-11-00
电子出版
2014-00-30
页码
3748-58
Language
English
Country/Region
United States
NLM ID
0372763
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