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The Glyoxalase System in Age-Related Diseases: Nutritional Intervention as Anti-Ageing Strategy
Gemma Aragonès1, Sheldon Rowan1,2,3, Sarah G Francisco1
1Laboratory for Nutrition and Vision Research, USDA Human Nutrition Research Center on Aging, Tufts University, Boston, MA 02155, USA.
Abstract:
The glyoxalase system is critical for the detoxification of advanced glycation end-products (AGEs). AGEs are toxic compounds resulting from the non-enzymatic modification of biomolecules by sugars or their metabolites through a process called glycation. AGEs have adverse effects on many tissues, playing a pathogenic role in the progression of molecular and cellular aging. Due to the age-related decline in different anti-AGE mechanisms, including detoxifying mechanisms and proteolytic capacities, glycated biomolecules are accumulated during normal aging in our body in a tissue-dependent manner. Viewed in this way, anti-AGE detoxifying systems are proposed as therapeutic targets to fight pathological dysfunction associated with AGE accumulation and cytotoxicity. Here, we summarize the current state of knowledge related to the protective mechanisms against glycative stress, with a special emphasis on the glyoxalase system as the primary mechanism for detoxifying the reactive intermediates of glycation. This review focuses on glyoxalase 1 (GLO1), the first enzyme of the glyoxalase system, and the rate-limiting enzyme of this catalytic process. Although GLO1 is ubiquitously expressed, protein levels and activities are regulated in a tissue-dependent manner. We provide a comparative analysis of GLO1 protein in different tissues. Our findings indicate a role for the glyoxalase system in homeostasis in the eye retina, a highly oxygenated tissue with rapid protein turnover. We also describe modulation of the glyoxalase system as a therapeutic target to delay the development of age-related diseases and summarize the literature that describes the current knowledge about nutritional compounds with properties to modulate the glyoxalase system.
Insights
The glyoxalase system, particularly glyoxalase 1 (GLO1), detoxifies harmful advanced glycation end-products (AGEs). Modulating this system offers therapeutic potential against age-related diseases caused by AGE accumulation.
Area of Science:
- Biochemistry
- Molecular Biology
- Gerontology
Background:
- Advanced glycation end-products (AGEs) accumulate with aging due to declining detoxification mechanisms.
- AGEs contribute to cellular aging and tissue dysfunction.
- The glyoxalase system is a primary defense against AGEs.
Purpose of the Study:
- To review the protective mechanisms against glycative stress, focusing on the glyoxalase system.
- To examine the role of glyoxalase 1 (GLO1) in AGE detoxification.
- To explore therapeutic strategies targeting the glyoxalase system for age-related diseases.
Main Methods:
- Literature review of glyoxalase system function and AGE detoxification.
- Comparative analysis of GLO1 protein expression and activity across tissues.
- Summary of nutritional compounds modulating the glyoxalase system.
Main Results:
- The glyoxalase system, especially GLO1, is crucial for detoxifying AGE precursors.
- GLO1 expression and activity show tissue-dependent regulation.
- The glyoxalase system plays a role in retinal homeostasis.
- Nutritional compounds can modulate glyoxalase system activity.
Conclusions:
- The glyoxalase system is a key therapeutic target for mitigating AGE-related aging.
- Targeting GLO1 may delay age-related diseases.
- Further research into nutritional modulation of the glyoxalase system is warranted.
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