Glyoxal-Lysine Dimer, an Advanced Glycation End Product, Induces Oxidative Damage and Inflammatory Response by Interacting with RAGE
The glyoxal-lysine dimer (GOLD), which is a glyoxal (GO)-derived advanced glycation end product (AGE), is produced by the glycation reaction. In this study, we evaluated the effect of GOLD on the oxidative damage and inflammatory response in SV40 MES 13 mesangial cells. GOLD significantly increased...
| Published in: | Antioxidants |
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| Main Authors: | , , , , , , |
| Format: | Article |
| Language: | English |
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2021-09-01
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| Online Access: | https://www.mdpi.com/2076-3921/10/9/1486 |
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| author | Hee-Weon Lee Min Ji Gu Yoonsook Kim Jee-Young Lee Seungju Lee In-Wook Choi Sang Keun Ha |
| author_facet | Hee-Weon Lee Min Ji Gu Yoonsook Kim Jee-Young Lee Seungju Lee In-Wook Choi Sang Keun Ha |
| author_sort | Hee-Weon Lee |
| collection | DOAJ |
| container_title | Antioxidants |
| description | The glyoxal-lysine dimer (GOLD), which is a glyoxal (GO)-derived advanced glycation end product (AGE), is produced by the glycation reaction. In this study, we evaluated the effect of GOLD on the oxidative damage and inflammatory response in SV40 MES 13 mesangial cells. GOLD significantly increased the linkage with the V-type immunoglobulin domain of RAGE, a specific receptor of AGE. We found that GOLD treatment increased RAGE expression and reactive oxygen species (ROS) production in mesangial cells. GOLD remarkably regulated the protein and mRNA expression of nuclear factor erythroid 2-related factor 2 (NRF2) and glyoxalase 1 (GLO1). In addition, mitochondrial deterioration and inflammation occurred via GOLD-induced oxidative stress in mesangial cells. GOLD regulated the mitogen-activated protein kinase (MAPK) and the release of proinflammatory cytokines associated with the inflammatory mechanism of mesangial cells. Furthermore, oxidative stress and inflammatory responses triggered by GOLD were suppressed through RAGE inhibition using RAGE siRNA. These results demonstrate that the interaction of GOLD and RAGE plays an important role in the function of mesangial cells. |
| format | Article |
| id | doaj-art-e832a9611459415ea3e22f421d2ddc41 |
| institution | Directory of Open Access Journals |
| issn | 2076-3921 |
| language | English |
| publishDate | 2021-09-01 |
| publisher | MDPI AG |
| record_format | Article |
| spelling | doaj-art-e832a9611459415ea3e22f421d2ddc412025-08-19T22:40:45ZengMDPI AGAntioxidants2076-39212021-09-01109148610.3390/antiox10091486Glyoxal-Lysine Dimer, an Advanced Glycation End Product, Induces Oxidative Damage and Inflammatory Response by Interacting with RAGEHee-Weon Lee0Min Ji Gu1Yoonsook Kim2Jee-Young Lee3Seungju Lee4In-Wook Choi5Sang Keun Ha6Korea Food Research Institute, 245, Nongsaengmyeong-ro, Iseo-myeon, Wanju-gun 55365, Jeollabuk-do, KoreaKorea Food Research Institute, 245, Nongsaengmyeong-ro, Iseo-myeon, Wanju-gun 55365, Jeollabuk-do, KoreaKorea Food Research Institute, 245, Nongsaengmyeong-ro, Iseo-myeon, Wanju-gun 55365, Jeollabuk-do, KoreaMolecular Design Team, New Drug Development Center, Daegu Gyeongbuk Medical Innovation Foundation (DGMIF), Daegu 41061, KoreaMolecular Design Team, New Drug Development Center, Daegu Gyeongbuk Medical Innovation Foundation (DGMIF), Daegu 41061, KoreaKorea Food Research Institute, 245, Nongsaengmyeong-ro, Iseo-myeon, Wanju-gun 55365, Jeollabuk-do, KoreaKorea Food Research Institute, 245, Nongsaengmyeong-ro, Iseo-myeon, Wanju-gun 55365, Jeollabuk-do, KoreaThe glyoxal-lysine dimer (GOLD), which is a glyoxal (GO)-derived advanced glycation end product (AGE), is produced by the glycation reaction. In this study, we evaluated the effect of GOLD on the oxidative damage and inflammatory response in SV40 MES 13 mesangial cells. GOLD significantly increased the linkage with the V-type immunoglobulin domain of RAGE, a specific receptor of AGE. We found that GOLD treatment increased RAGE expression and reactive oxygen species (ROS) production in mesangial cells. GOLD remarkably regulated the protein and mRNA expression of nuclear factor erythroid 2-related factor 2 (NRF2) and glyoxalase 1 (GLO1). In addition, mitochondrial deterioration and inflammation occurred via GOLD-induced oxidative stress in mesangial cells. GOLD regulated the mitogen-activated protein kinase (MAPK) and the release of proinflammatory cytokines associated with the inflammatory mechanism of mesangial cells. Furthermore, oxidative stress and inflammatory responses triggered by GOLD were suppressed through RAGE inhibition using RAGE siRNA. These results demonstrate that the interaction of GOLD and RAGE plays an important role in the function of mesangial cells.https://www.mdpi.com/2076-3921/10/9/1486glyoxal-lysine dimeradvanced glycation end productreceptor of advanced glycation end productoxidative stressNRF2/GLO-1mitochondrial function |
| spellingShingle | Hee-Weon Lee Min Ji Gu Yoonsook Kim Jee-Young Lee Seungju Lee In-Wook Choi Sang Keun Ha Glyoxal-Lysine Dimer, an Advanced Glycation End Product, Induces Oxidative Damage and Inflammatory Response by Interacting with RAGE glyoxal-lysine dimer advanced glycation end product receptor of advanced glycation end product oxidative stress NRF2/GLO-1 mitochondrial function |
| title | Glyoxal-Lysine Dimer, an Advanced Glycation End Product, Induces Oxidative Damage and Inflammatory Response by Interacting with RAGE |
| title_full | Glyoxal-Lysine Dimer, an Advanced Glycation End Product, Induces Oxidative Damage and Inflammatory Response by Interacting with RAGE |
| title_fullStr | Glyoxal-Lysine Dimer, an Advanced Glycation End Product, Induces Oxidative Damage and Inflammatory Response by Interacting with RAGE |
| title_full_unstemmed | Glyoxal-Lysine Dimer, an Advanced Glycation End Product, Induces Oxidative Damage and Inflammatory Response by Interacting with RAGE |
| title_short | Glyoxal-Lysine Dimer, an Advanced Glycation End Product, Induces Oxidative Damage and Inflammatory Response by Interacting with RAGE |
| title_sort | glyoxal lysine dimer an advanced glycation end product induces oxidative damage and inflammatory response by interacting with rage |
| topic | glyoxal-lysine dimer advanced glycation end product receptor of advanced glycation end product oxidative stress NRF2/GLO-1 mitochondrial function |
| url | https://www.mdpi.com/2076-3921/10/9/1486 |
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