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The Axin/TNKS complex interacts with KIF3A and is required for insulin-stimulated GLUT4 translocation

Insulin-stimulated glucose uptake by the glucose transporter GLUT4 plays a central role in whole-body glucose homeostasis, dysregulation of which leads to type 2 diabetes. However, the molecular components and mechanisms regulating insulin-stimulated glucose uptake remain largely unclear. Here, we d...

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Autores principales: Guo, Hui-Ling, Zhang, Cixiong, Liu, Qi, Li, Qinxi, Lian, Guili, Wu, Di, Li, Xuebin, Zhang, Wei, Shen, Yuemao, Ye, Zhiyun, Lin, Shu-Yong, Lin, Sheng-Cai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3411167/
https://www.ncbi.nlm.nih.gov/pubmed/22473005
http://dx.doi.org/10.1038/cr.2012.52
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author Guo, Hui-Ling
Zhang, Cixiong
Liu, Qi
Li, Qinxi
Lian, Guili
Wu, Di
Li, Xuebin
Zhang, Wei
Shen, Yuemao
Ye, Zhiyun
Lin, Shu-Yong
Lin, Sheng-Cai
author_facet Guo, Hui-Ling
Zhang, Cixiong
Liu, Qi
Li, Qinxi
Lian, Guili
Wu, Di
Li, Xuebin
Zhang, Wei
Shen, Yuemao
Ye, Zhiyun
Lin, Shu-Yong
Lin, Sheng-Cai
author_sort Guo, Hui-Ling
collection PubMed
description Insulin-stimulated glucose uptake by the glucose transporter GLUT4 plays a central role in whole-body glucose homeostasis, dysregulation of which leads to type 2 diabetes. However, the molecular components and mechanisms regulating insulin-stimulated glucose uptake remain largely unclear. Here, we demonstrate that Axin interacts with the ADP-ribosylase tankyrase 2 (TNKS2) and the kinesin motor protein KIF3A, forming a ternary complex crucial for GLUT4 translocation in response to insulin. Specific knockdown of the individual components of the complex attenuated insulin-stimulated GLUT4 translocation to the plasma membrane. Importantly, TNKS2(−/−) mice exhibit reduced insulin sensitivity and higher blood glucose levels when re-fed after fasting. Mechanistically, we demonstrate that in the absence of insulin, Axin, TNKS and KIF3A are co-localized with GLUT4 on the trans-Golgi network. Insulin treatment suppresses the ADP-ribosylase activity of TNKS, leading to a reduction in ADP ribosylation and ubiquitination of both Axin and TNKS, and a concurrent stabilization of the complex. Inhibition of Akt, the major effector kinase of insulin signaling, abrogates the insulin-mediated complex stabilization. We have thus elucidated a new protein complex that is directly associated with the motor protein kinesin in insulin-stimulated GLUT4 translocation.
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spelling pubmed-34111672012-08-03 The Axin/TNKS complex interacts with KIF3A and is required for insulin-stimulated GLUT4 translocation Guo, Hui-Ling Zhang, Cixiong Liu, Qi Li, Qinxi Lian, Guili Wu, Di Li, Xuebin Zhang, Wei Shen, Yuemao Ye, Zhiyun Lin, Shu-Yong Lin, Sheng-Cai Cell Res Original Article Insulin-stimulated glucose uptake by the glucose transporter GLUT4 plays a central role in whole-body glucose homeostasis, dysregulation of which leads to type 2 diabetes. However, the molecular components and mechanisms regulating insulin-stimulated glucose uptake remain largely unclear. Here, we demonstrate that Axin interacts with the ADP-ribosylase tankyrase 2 (TNKS2) and the kinesin motor protein KIF3A, forming a ternary complex crucial for GLUT4 translocation in response to insulin. Specific knockdown of the individual components of the complex attenuated insulin-stimulated GLUT4 translocation to the plasma membrane. Importantly, TNKS2(−/−) mice exhibit reduced insulin sensitivity and higher blood glucose levels when re-fed after fasting. Mechanistically, we demonstrate that in the absence of insulin, Axin, TNKS and KIF3A are co-localized with GLUT4 on the trans-Golgi network. Insulin treatment suppresses the ADP-ribosylase activity of TNKS, leading to a reduction in ADP ribosylation and ubiquitination of both Axin and TNKS, and a concurrent stabilization of the complex. Inhibition of Akt, the major effector kinase of insulin signaling, abrogates the insulin-mediated complex stabilization. We have thus elucidated a new protein complex that is directly associated with the motor protein kinesin in insulin-stimulated GLUT4 translocation. Nature Publishing Group 2012-08 2012-04-03 /pmc/articles/PMC3411167/ /pubmed/22473005 http://dx.doi.org/10.1038/cr.2012.52 Text en Copyright © 2012 Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences http://creativecommons.org/licenses/by-nc-nd/3.0 This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0
spellingShingle Original Article
Guo, Hui-Ling
Zhang, Cixiong
Liu, Qi
Li, Qinxi
Lian, Guili
Wu, Di
Li, Xuebin
Zhang, Wei
Shen, Yuemao
Ye, Zhiyun
Lin, Shu-Yong
Lin, Sheng-Cai
The Axin/TNKS complex interacts with KIF3A and is required for insulin-stimulated GLUT4 translocation
title The Axin/TNKS complex interacts with KIF3A and is required for insulin-stimulated GLUT4 translocation
title_full The Axin/TNKS complex interacts with KIF3A and is required for insulin-stimulated GLUT4 translocation
title_fullStr The Axin/TNKS complex interacts with KIF3A and is required for insulin-stimulated GLUT4 translocation
title_full_unstemmed The Axin/TNKS complex interacts with KIF3A and is required for insulin-stimulated GLUT4 translocation
title_short The Axin/TNKS complex interacts with KIF3A and is required for insulin-stimulated GLUT4 translocation
title_sort axin/tnks complex interacts with kif3a and is required for insulin-stimulated glut4 translocation
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3411167/
https://www.ncbi.nlm.nih.gov/pubmed/22473005
http://dx.doi.org/10.1038/cr.2012.52
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