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Induction and Analysis of Oxidative Stress in Sleeping Beauty Transposon-Transfected Human Retinal Pigment Epithelial Cells
Published on: December 11, 2020
Human age‑related cataracts: epigenetic suppression of the nuclear factor erythroid 2‑related factor 2‑mediated
Yunxia Gao1, Ying Yan1, Tingfen Huang2
1Department of Ophthalmology, South Medical Center of Linyi People's Hospital, Linyi, Shandong 276000, P.R. China.
Abstract:
Human aging is a multifactorial process. The most prominent effects of aging include visual impairments, particularly age‑related cataracts (ARC). Several studies have reported that oxidative stress and failure of the antioxidant system are the major factors contributing to lens oxidation. The present study focused on the nuclear factor erythroid 2‑related factor 2 (Nrf2)/kelch‑like ECH‑associated protein 1 (Keap1)‑mediated antioxidant system and its failure in aging lenses. The protein levels, gene expression and methylation status of Nrf2/Keap1 were investigated in human lenses from different age groups. Human lens epithelial cells were collected from different age groups ranging between 15 and 80 years and cataract lenses were also collected for the comparative study. The results demonstrated significantly lower protein and gene expression levels of Nrf2 in lenses of increasing age; however, a significant increase in the expression of the Nrf2 regulator, Keap1, was observed. Based on these results, the present study then aimed to investigate the underlying mechanisms. A gene specific DNA methylation study was performed in cataractous lenses of different ages, which revealed significantly increased levels of demethylated DNA in the Keap1 promoter with increasing age. Notably, the results from cataract lenses demonstrated significant demethylation of the Keap1 promoter, which was also reflected in the results of clear lenses aged between 66 and 80 years. These results suggested that demethylation in the Keap1 promoter region activated the expression of the Keap1 protein, which then increased the targeting of Nrf2 for proteasomal degradation. Therefore, decreased activity of Nrf2 restrained the transcription of its downstream antioxidant enzyme and led to the failure of the antioxidant system, ultimately leading to the formation of ARCs.
Insights
Aging impairs the antioxidant system, leading to cataracts. Increased Keap1 demethylation reduces Nrf2 activity, causing lens oxidation and age-related cataracts (ARCs).
Area of Science:
- Ophthalmology and Molecular Biology
- Aging and Oxidative Stress Research
Background:
- Human aging involves multifactorial processes, with age-related cataracts (ARCs) being a prominent visual impairment.
- Oxidative stress and antioxidant system failure are key contributors to lens oxidation in ARCs.
Purpose of the Study:
- To investigate the role of the nuclear factor erythroid 2-related factor 2 (Nrf2)/kelch-like ECH-associated protein 1 (Keap1) antioxidant system and its failure in aging human lenses.
- To examine protein levels, gene expression, and DNA methylation of Nrf2/Keap1 in relation to age and cataract formation.
Main Methods:
- Analysis of Nrf2 and Keap1 protein and gene expression in human lens epithelial cells across age groups (15-80 years).
- DNA methylation analysis of the Keap1 promoter in cataractous and clear lenses of varying ages.
- Comparative study using both clear and cataractous lenses.
Main Results:
- Significantly decreased Nrf2 protein and gene expression with increasing age.
- Significantly increased Keap1 expression with increasing age.
- Increased demethylation of the Keap1 promoter observed with age, particularly in cataractous lenses and older clear lenses (66-80 years).
Conclusions:
- Age-related demethylation of the Keap1 promoter enhances Keap1 expression.
- Elevated Keap1 promotes Nrf2 degradation, reducing antioxidant capacity.
- This Nrf2 deficiency impairs antioxidant enzyme transcription, leading to lens oxidation and the development of age-related cataracts.
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