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The Wnt Signaling Pathway Effector TCF7L2 Controls Gut and Brain Proglucagon Gene Expression and Glucose Homeostasis

The type 2 diabetes risk gene TCF7L2 is the effector of the Wnt signaling pathway. We found previously that in gut endocrine L-cell lines, TCF7L2 controls transcription of the proglucagon gene (gcg), which encodes the incretin hormone glucagon-like peptide-1 (GLP-1). Whereas peripheral GLP-1 stimula...

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Autores principales: Shao, Weijuan, Wang, Dingyan, Chiang, Yu-Ting, Ip, Wilfred, Zhu, Lingyun, Xu, Fenghao, Columbus, Joshua, Belsham, Denise D., Irwin, David M., Zhang, Haibo, Wen, Xiaoyan, Wang, Qinghua, Jin, Tianru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3581223/
https://www.ncbi.nlm.nih.gov/pubmed/22966074
http://dx.doi.org/10.2337/db12-0365
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author Shao, Weijuan
Wang, Dingyan
Chiang, Yu-Ting
Ip, Wilfred
Zhu, Lingyun
Xu, Fenghao
Columbus, Joshua
Belsham, Denise D.
Irwin, David M.
Zhang, Haibo
Wen, Xiaoyan
Wang, Qinghua
Jin, Tianru
author_facet Shao, Weijuan
Wang, Dingyan
Chiang, Yu-Ting
Ip, Wilfred
Zhu, Lingyun
Xu, Fenghao
Columbus, Joshua
Belsham, Denise D.
Irwin, David M.
Zhang, Haibo
Wen, Xiaoyan
Wang, Qinghua
Jin, Tianru
author_sort Shao, Weijuan
collection PubMed
description The type 2 diabetes risk gene TCF7L2 is the effector of the Wnt signaling pathway. We found previously that in gut endocrine L-cell lines, TCF7L2 controls transcription of the proglucagon gene (gcg), which encodes the incretin hormone glucagon-like peptide-1 (GLP-1). Whereas peripheral GLP-1 stimulates insulin secretion, brain GLP-1 controls energy homeostasis through yet-to-be defined mechanisms. We aim to determine the metabolic effect of a functional knockdown of TCF7L2 by generating transgenic mice that express dominant-negative TCF7L2 (TCF7L2DN) specifically in gcg-expressing cells. The gcg-TCF7L2DN transgenic mice showed reduced gcg expression in their gut and brain, but not in pancreas. Defects in glucose homeostasis were observed in these mice, associated with attenuated plasma insulin levels in response to glucose challenge. The defect in glucose disposal was exacerbated with high-fat diet. Brain Wnt activity and feeding-mediated hypothalamic AMP-activated protein kinase (AMPK) repression in these mice were impaired. Peripheral injection of the cAMP-promoting agent forskolin increased brain β-cat Ser675 phosphorylation and brain gcg expression and restored feeding-mediated hypothalamic AMPK repression. We conclude that TCF7L2 and Wnt signaling control gut and brain gcg expression and glucose homeostasis and speculate that positive cross-talk between Wnt and GLP-1/cAMP signaling is an underlying mechanism for brain GLP-1 in exerting its metabolic functions.
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spelling pubmed-35812232014-03-01 The Wnt Signaling Pathway Effector TCF7L2 Controls Gut and Brain Proglucagon Gene Expression and Glucose Homeostasis Shao, Weijuan Wang, Dingyan Chiang, Yu-Ting Ip, Wilfred Zhu, Lingyun Xu, Fenghao Columbus, Joshua Belsham, Denise D. Irwin, David M. Zhang, Haibo Wen, Xiaoyan Wang, Qinghua Jin, Tianru Diabetes Signal Transduction The type 2 diabetes risk gene TCF7L2 is the effector of the Wnt signaling pathway. We found previously that in gut endocrine L-cell lines, TCF7L2 controls transcription of the proglucagon gene (gcg), which encodes the incretin hormone glucagon-like peptide-1 (GLP-1). Whereas peripheral GLP-1 stimulates insulin secretion, brain GLP-1 controls energy homeostasis through yet-to-be defined mechanisms. We aim to determine the metabolic effect of a functional knockdown of TCF7L2 by generating transgenic mice that express dominant-negative TCF7L2 (TCF7L2DN) specifically in gcg-expressing cells. The gcg-TCF7L2DN transgenic mice showed reduced gcg expression in their gut and brain, but not in pancreas. Defects in glucose homeostasis were observed in these mice, associated with attenuated plasma insulin levels in response to glucose challenge. The defect in glucose disposal was exacerbated with high-fat diet. Brain Wnt activity and feeding-mediated hypothalamic AMP-activated protein kinase (AMPK) repression in these mice were impaired. Peripheral injection of the cAMP-promoting agent forskolin increased brain β-cat Ser675 phosphorylation and brain gcg expression and restored feeding-mediated hypothalamic AMPK repression. We conclude that TCF7L2 and Wnt signaling control gut and brain gcg expression and glucose homeostasis and speculate that positive cross-talk between Wnt and GLP-1/cAMP signaling is an underlying mechanism for brain GLP-1 in exerting its metabolic functions. American Diabetes Association 2013-03 2013-02-14 /pmc/articles/PMC3581223/ /pubmed/22966074 http://dx.doi.org/10.2337/db12-0365 Text en © 2013 by the American Diabetes Association. Readers may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. See http://creativecommons.org/licenses/by-nc-nd/3.0/ for details.
spellingShingle Signal Transduction
Shao, Weijuan
Wang, Dingyan
Chiang, Yu-Ting
Ip, Wilfred
Zhu, Lingyun
Xu, Fenghao
Columbus, Joshua
Belsham, Denise D.
Irwin, David M.
Zhang, Haibo
Wen, Xiaoyan
Wang, Qinghua
Jin, Tianru
The Wnt Signaling Pathway Effector TCF7L2 Controls Gut and Brain Proglucagon Gene Expression and Glucose Homeostasis
title The Wnt Signaling Pathway Effector TCF7L2 Controls Gut and Brain Proglucagon Gene Expression and Glucose Homeostasis
title_full The Wnt Signaling Pathway Effector TCF7L2 Controls Gut and Brain Proglucagon Gene Expression and Glucose Homeostasis
title_fullStr The Wnt Signaling Pathway Effector TCF7L2 Controls Gut and Brain Proglucagon Gene Expression and Glucose Homeostasis
title_full_unstemmed The Wnt Signaling Pathway Effector TCF7L2 Controls Gut and Brain Proglucagon Gene Expression and Glucose Homeostasis
title_short The Wnt Signaling Pathway Effector TCF7L2 Controls Gut and Brain Proglucagon Gene Expression and Glucose Homeostasis
title_sort wnt signaling pathway effector tcf7l2 controls gut and brain proglucagon gene expression and glucose homeostasis
topic Signal Transduction
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3581223/
https://www.ncbi.nlm.nih.gov/pubmed/22966074
http://dx.doi.org/10.2337/db12-0365
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