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Advanced glycation end products-induced insulin resistance involves repression of skeletal muscle GLUT4 expression

Little is known about advanced glycation end products (AGEs) participation in glucose homeostasis, a process in which skeletal muscle glucose transporter GLUT4 (Scl2a4 gene) plays a key role. This study investigated (1) the in vivo and in vitro effects of AGEs on Slc2a4/GLUT4 expression in skeletal...

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Autores principales: Pinto-Junior, Danilo C., Silva, Karolline S., Michalani, Maria L., Yonamine, Caio Y., Esteves, João V., Fabre, Nelly T., Thieme, Karina, Catanozi, Sérgio, Okamoto, Maristela M., Seraphim, Patricia M., Corrêa-Giannella, Maria L., Passarelli, Marisa, Machado, Ubiratan F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5970140/
https://www.ncbi.nlm.nih.gov/pubmed/29802324
http://dx.doi.org/10.1038/s41598-018-26482-6
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author Pinto-Junior, Danilo C.
Silva, Karolline S.
Michalani, Maria L.
Yonamine, Caio Y.
Esteves, João V.
Fabre, Nelly T.
Thieme, Karina
Catanozi, Sérgio
Okamoto, Maristela M.
Seraphim, Patricia M.
Corrêa-Giannella, Maria L.
Passarelli, Marisa
Machado, Ubiratan F.
author_facet Pinto-Junior, Danilo C.
Silva, Karolline S.
Michalani, Maria L.
Yonamine, Caio Y.
Esteves, João V.
Fabre, Nelly T.
Thieme, Karina
Catanozi, Sérgio
Okamoto, Maristela M.
Seraphim, Patricia M.
Corrêa-Giannella, Maria L.
Passarelli, Marisa
Machado, Ubiratan F.
author_sort Pinto-Junior, Danilo C.
collection PubMed
description Little is known about advanced glycation end products (AGEs) participation in glucose homeostasis, a process in which skeletal muscle glucose transporter GLUT4 (Scl2a4 gene) plays a key role. This study investigated (1) the in vivo and in vitro effects of AGEs on Slc2a4/GLUT4 expression in skeletal muscle of healthy rats, and (2) the potential involvement of endoplasmic reticulum and inflammatory stress in the observed regulations. For in vivo analysis, rats were treated with advanced glycated rat albumin (AGE-albumin) for 12 weeks; for in vitro analysis, soleus muscles from normal rats were incubated with bovine AGE-albumin for 2.5 to 7.5 hours. In vivo, AGE-albumin induced whole-body insulin resistance; decreased (~30%) Slc2a4 mRNA and GLUT4 protein content; and increased (~30%) the nuclear content of nuclear factor NF-kappa-B p50 subunit (NFKB1), and cellular content of 78 kDa glucose-regulated protein (GRP78). In vitro, incubation with AGE-albumin decreased (~50%) the Slc2a4/GLUT4 content; and increased cellular content of GRP78/94, phosphorylated-IKK-alpha/beta, nuclear content of NFKB1 and RELA, and the nuclear protein binding into Slc2a4 promoter NFKB-binding site. The data reveal that AGEs impair glucose homeostasis in non-diabetic states of increased AGEs concentration; an effect that involves activation of endoplasmic reticulum- and inflammatory-stress and repression of Slc2a4/GLUT4 expression.
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spelling pubmed-59701402018-05-30 Advanced glycation end products-induced insulin resistance involves repression of skeletal muscle GLUT4 expression Pinto-Junior, Danilo C. Silva, Karolline S. Michalani, Maria L. Yonamine, Caio Y. Esteves, João V. Fabre, Nelly T. Thieme, Karina Catanozi, Sérgio Okamoto, Maristela M. Seraphim, Patricia M. Corrêa-Giannella, Maria L. Passarelli, Marisa Machado, Ubiratan F. Sci Rep Article Little is known about advanced glycation end products (AGEs) participation in glucose homeostasis, a process in which skeletal muscle glucose transporter GLUT4 (Scl2a4 gene) plays a key role. This study investigated (1) the in vivo and in vitro effects of AGEs on Slc2a4/GLUT4 expression in skeletal muscle of healthy rats, and (2) the potential involvement of endoplasmic reticulum and inflammatory stress in the observed regulations. For in vivo analysis, rats were treated with advanced glycated rat albumin (AGE-albumin) for 12 weeks; for in vitro analysis, soleus muscles from normal rats were incubated with bovine AGE-albumin for 2.5 to 7.5 hours. In vivo, AGE-albumin induced whole-body insulin resistance; decreased (~30%) Slc2a4 mRNA and GLUT4 protein content; and increased (~30%) the nuclear content of nuclear factor NF-kappa-B p50 subunit (NFKB1), and cellular content of 78 kDa glucose-regulated protein (GRP78). In vitro, incubation with AGE-albumin decreased (~50%) the Slc2a4/GLUT4 content; and increased cellular content of GRP78/94, phosphorylated-IKK-alpha/beta, nuclear content of NFKB1 and RELA, and the nuclear protein binding into Slc2a4 promoter NFKB-binding site. The data reveal that AGEs impair glucose homeostasis in non-diabetic states of increased AGEs concentration; an effect that involves activation of endoplasmic reticulum- and inflammatory-stress and repression of Slc2a4/GLUT4 expression. Nature Publishing Group UK 2018-05-25 /pmc/articles/PMC5970140/ /pubmed/29802324 http://dx.doi.org/10.1038/s41598-018-26482-6 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Pinto-Junior, Danilo C.
Silva, Karolline S.
Michalani, Maria L.
Yonamine, Caio Y.
Esteves, João V.
Fabre, Nelly T.
Thieme, Karina
Catanozi, Sérgio
Okamoto, Maristela M.
Seraphim, Patricia M.
Corrêa-Giannella, Maria L.
Passarelli, Marisa
Machado, Ubiratan F.
Advanced glycation end products-induced insulin resistance involves repression of skeletal muscle GLUT4 expression
title Advanced glycation end products-induced insulin resistance involves repression of skeletal muscle GLUT4 expression
title_full Advanced glycation end products-induced insulin resistance involves repression of skeletal muscle GLUT4 expression
title_fullStr Advanced glycation end products-induced insulin resistance involves repression of skeletal muscle GLUT4 expression
title_full_unstemmed Advanced glycation end products-induced insulin resistance involves repression of skeletal muscle GLUT4 expression
title_short Advanced glycation end products-induced insulin resistance involves repression of skeletal muscle GLUT4 expression
title_sort advanced glycation end products-induced insulin resistance involves repression of skeletal muscle glut4 expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5970140/
https://www.ncbi.nlm.nih.gov/pubmed/29802324
http://dx.doi.org/10.1038/s41598-018-26482-6
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