Cargando…

Receptor for Advanced Glycation End Products Regulates Adipocyte Hypertrophy and Insulin Sensitivity in Mice: Involvement of Toll-Like Receptor 2

Receptor for advanced glycation end products (RAGE) has been shown to be involved in adiposity as well as atherosclerosis even in nondiabetic conditions. In this study, we examined mechanisms underlying how RAGE regulates adiposity and insulin sensitivity. RAGE overexpression in 3T3-L1 preadipocytes...

Descripción completa

Detalles Bibliográficos
Autores principales: Monden, Masayo, Koyama, Hidenori, Otsuka, Yoshiko, Morioka, Tomoaki, Mori, Katsuhito, Shoji, Takuhito, Mima, Yohei, Motoyama, Koka, Fukumoto, Shinya, Shioi, Atsushi, Emoto, Masanori, Yamamoto, Yasuhiko, Yamamoto, Hiroshi, Nishizawa, Yoshiki, Kurajoh, Masafumi, Yamamoto, Tetsuya, Inaba, Masaaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3554382/
https://www.ncbi.nlm.nih.gov/pubmed/23011593
http://dx.doi.org/10.2337/db11-1116
_version_ 1782256885622112256
author Monden, Masayo
Koyama, Hidenori
Otsuka, Yoshiko
Morioka, Tomoaki
Mori, Katsuhito
Shoji, Takuhito
Mima, Yohei
Motoyama, Koka
Fukumoto, Shinya
Shioi, Atsushi
Emoto, Masanori
Yamamoto, Yasuhiko
Yamamoto, Hiroshi
Nishizawa, Yoshiki
Kurajoh, Masafumi
Yamamoto, Tetsuya
Inaba, Masaaki
author_facet Monden, Masayo
Koyama, Hidenori
Otsuka, Yoshiko
Morioka, Tomoaki
Mori, Katsuhito
Shoji, Takuhito
Mima, Yohei
Motoyama, Koka
Fukumoto, Shinya
Shioi, Atsushi
Emoto, Masanori
Yamamoto, Yasuhiko
Yamamoto, Hiroshi
Nishizawa, Yoshiki
Kurajoh, Masafumi
Yamamoto, Tetsuya
Inaba, Masaaki
author_sort Monden, Masayo
collection PubMed
description Receptor for advanced glycation end products (RAGE) has been shown to be involved in adiposity as well as atherosclerosis even in nondiabetic conditions. In this study, we examined mechanisms underlying how RAGE regulates adiposity and insulin sensitivity. RAGE overexpression in 3T3-L1 preadipocytes using adenoviral gene transfer accelerated adipocyte hypertrophy, whereas inhibitions of RAGE by small interfering RNA significantly decrease adipocyte hypertrophy. Furthermore, double knockdown of high mobility group box-1 and S100b, both of which are RAGE ligands endogenously expressed in 3T3-L1 cells, also canceled RAGE-medicated adipocyte hypertrophy, implicating a fundamental role of ligands–RAGE ligation. Adipocyte hypertrophy induced by RAGE overexpression is associated with suppression of glucose transporter type 4 and adiponectin mRNA expression, attenuated insulin-stimulated glucose uptake, and insulin-stimulated signaling. Toll-like receptor (Tlr)2 mRNA, but not Tlr4 mRNA, is rapidly upregulated by RAGE overexpression, and inhibition of Tlr2 almost completely abrogates RAGE-mediated adipocyte hypertrophy. Finally, RAGE(−/−) mice exhibited significantly less body weight, epididymal fat weight, epididymal adipocyte size, higher serum adiponectin levels, and higher insulin sensitivity than wild-type mice. RAGE deficiency is associated with early suppression of Tlr2 mRNA expression in adipose tissues. Thus, RAGE appears to be involved in mouse adipocyte hypertrophy and insulin sensitivity, whereas Tlr2 regulation may partly play a role.
format Online
Article
Text
id pubmed-3554382
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher American Diabetes Association
record_format MEDLINE/PubMed
spelling pubmed-35543822014-02-01 Receptor for Advanced Glycation End Products Regulates Adipocyte Hypertrophy and Insulin Sensitivity in Mice: Involvement of Toll-Like Receptor 2 Monden, Masayo Koyama, Hidenori Otsuka, Yoshiko Morioka, Tomoaki Mori, Katsuhito Shoji, Takuhito Mima, Yohei Motoyama, Koka Fukumoto, Shinya Shioi, Atsushi Emoto, Masanori Yamamoto, Yasuhiko Yamamoto, Hiroshi Nishizawa, Yoshiki Kurajoh, Masafumi Yamamoto, Tetsuya Inaba, Masaaki Diabetes Obesity Studies Receptor for advanced glycation end products (RAGE) has been shown to be involved in adiposity as well as atherosclerosis even in nondiabetic conditions. In this study, we examined mechanisms underlying how RAGE regulates adiposity and insulin sensitivity. RAGE overexpression in 3T3-L1 preadipocytes using adenoviral gene transfer accelerated adipocyte hypertrophy, whereas inhibitions of RAGE by small interfering RNA significantly decrease adipocyte hypertrophy. Furthermore, double knockdown of high mobility group box-1 and S100b, both of which are RAGE ligands endogenously expressed in 3T3-L1 cells, also canceled RAGE-medicated adipocyte hypertrophy, implicating a fundamental role of ligands–RAGE ligation. Adipocyte hypertrophy induced by RAGE overexpression is associated with suppression of glucose transporter type 4 and adiponectin mRNA expression, attenuated insulin-stimulated glucose uptake, and insulin-stimulated signaling. Toll-like receptor (Tlr)2 mRNA, but not Tlr4 mRNA, is rapidly upregulated by RAGE overexpression, and inhibition of Tlr2 almost completely abrogates RAGE-mediated adipocyte hypertrophy. Finally, RAGE(−/−) mice exhibited significantly less body weight, epididymal fat weight, epididymal adipocyte size, higher serum adiponectin levels, and higher insulin sensitivity than wild-type mice. RAGE deficiency is associated with early suppression of Tlr2 mRNA expression in adipose tissues. Thus, RAGE appears to be involved in mouse adipocyte hypertrophy and insulin sensitivity, whereas Tlr2 regulation may partly play a role. American Diabetes Association 2013-02 2013-01-17 /pmc/articles/PMC3554382/ /pubmed/23011593 http://dx.doi.org/10.2337/db11-1116 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 Obesity Studies
Monden, Masayo
Koyama, Hidenori
Otsuka, Yoshiko
Morioka, Tomoaki
Mori, Katsuhito
Shoji, Takuhito
Mima, Yohei
Motoyama, Koka
Fukumoto, Shinya
Shioi, Atsushi
Emoto, Masanori
Yamamoto, Yasuhiko
Yamamoto, Hiroshi
Nishizawa, Yoshiki
Kurajoh, Masafumi
Yamamoto, Tetsuya
Inaba, Masaaki
Receptor for Advanced Glycation End Products Regulates Adipocyte Hypertrophy and Insulin Sensitivity in Mice: Involvement of Toll-Like Receptor 2
title Receptor for Advanced Glycation End Products Regulates Adipocyte Hypertrophy and Insulin Sensitivity in Mice: Involvement of Toll-Like Receptor 2
title_full Receptor for Advanced Glycation End Products Regulates Adipocyte Hypertrophy and Insulin Sensitivity in Mice: Involvement of Toll-Like Receptor 2
title_fullStr Receptor for Advanced Glycation End Products Regulates Adipocyte Hypertrophy and Insulin Sensitivity in Mice: Involvement of Toll-Like Receptor 2
title_full_unstemmed Receptor for Advanced Glycation End Products Regulates Adipocyte Hypertrophy and Insulin Sensitivity in Mice: Involvement of Toll-Like Receptor 2
title_short Receptor for Advanced Glycation End Products Regulates Adipocyte Hypertrophy and Insulin Sensitivity in Mice: Involvement of Toll-Like Receptor 2
title_sort receptor for advanced glycation end products regulates adipocyte hypertrophy and insulin sensitivity in mice: involvement of toll-like receptor 2
topic Obesity Studies
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3554382/
https://www.ncbi.nlm.nih.gov/pubmed/23011593
http://dx.doi.org/10.2337/db11-1116
work_keys_str_mv AT mondenmasayo receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT koyamahidenori receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT otsukayoshiko receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT moriokatomoaki receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT morikatsuhito receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT shojitakuhito receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT mimayohei receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT motoyamakoka receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT fukumotoshinya receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT shioiatsushi receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT emotomasanori receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT yamamotoyasuhiko receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT yamamotohiroshi receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT nishizawayoshiki receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT kurajohmasafumi receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT yamamototetsuya receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2
AT inabamasaaki receptorforadvancedglycationendproductsregulatesadipocytehypertrophyandinsulinsensitivityinmiceinvolvementoftolllikereceptor2