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Published on: January 16, 2019
Rare and common genetic variations in the Keap1/Nrf2 antioxidant response pathway impact thyroglobulin gene
Antonela Matana1, Panos G Ziros2, Dionysios V Chartoumpekis3
1Department of Medical Biology, University of Split, School of Medicine, Split, Šoltanska 2, Split, Croatia.
Abstract:
Nuclear factor, erythroid 2-like 2 (Nrf2) is a transcription factor that has been gaining attention in the field of pharmacology and especially in the chemoprevention of diseases such as cancer, metabolic and neurodegenerative diseases, etc. This is because natural compounds such as sulforaphane, which is found in broccoli sprout extracts, can activate Nrf2. The repertoire of the roles of Nrf2 is ever increasing; besides its traditional antioxidant and cytoprotective effects, Nrf2 can have other functions as a transcription factor. We have recently shown that Nrf2 directly regulates the expression of thyroglobulin (Tg), which is the most abundant thyroidal protein and the precursor of thyroid hormones. Two functional binding sites for Nrf2 (antioxidant response elements, AREs) were identified in the regulatory region of the TG gene. Interestingly, we then observed that one of these AREs harbors a rare single-nucleotide polymorphism (SNP). Also recently, we performed the first genome-wide association study (GWAS) for common SNPs that impact the circulating levels of Tg. Based on these investigations, we were triggered (i) to investigate whether common SNPs in the Nrf2 pathway correlate with circulating Tg levels; and (ii) to examine whether the rare SNP in one of the TG regulatory AREs may affect gene expression. To address the first question, we analyzed GWAS data from a general population and its two subpopulations, one with thyroid disease and/or abnormal thyroid function tests and the other without, in which circulating Tg levels had been measured. Statistically significant associations with Tg levels were observed in the genes encoding Nrf2 and Keap1, including, notably, a known functional SNP in the promoter of the gene encoding Nrf2. Regarding the rare SNP (rs778940395) in the proximal ARE of the TG enhancer, luciferase reporter gene expression studies in PCCL3 rat thyroid follicular cells showed that this SNP abrogated the basal and sulforaphane- or TSH-induced luciferase activity, behaving as a complete loss-of-function mutation. Thus, both rare and common genetic variation in the Keap1/Nrf2 pathway can impact TG expression and Tg circulating levels, respectively.
Insights
Genetic variations in the Keap1/Nrf2 pathway influence thyroglobulin (Tg) gene expression and circulating Tg levels. A rare SNP in the TG gene acts as a loss-of-function mutation, impacting thyroid hormone precursor regulation.
Area of Science:
- Endocrinology
- Genetics
- Molecular Biology
Background:
- Nuclear factor, erythroid 2-like 2 (Nrf2) is a transcription factor with emerging roles beyond antioxidant effects.
- Nrf2 is known to activate gene expression, and natural compounds like sulforaphane can modulate its activity.
- Thyroglobulin (Tg) is the main protein in the thyroid and precursor to thyroid hormones, with its gene regulation being of significant interest.
Purpose of the Study:
- To investigate correlations between common single-nucleotide polymorphisms (SNPs) in the Nrf2 pathway and circulating Tg levels.
- To examine the functional impact of a rare SNP within the regulatory region of the TG gene on gene expression.
- To understand the combined influence of genetic variations in the Keap1/Nrf2 pathway on Tg regulation.
Main Methods:
- Genome-wide association study (GWAS) analysis of circulating Tg levels in general and thyroid-specific populations.
- Analysis of common SNPs in genes encoding Nrf2 and Keap1.
- Luciferase reporter gene assays in rat thyroid follicular cells to assess the function of a rare SNP in the TG gene's regulatory region.
Main Results:
- Statistically significant associations were found between circulating Tg levels and SNPs in the Nrf2 and Keap1 genes.
- A known functional SNP in the Nrf2 gene promoter was associated with Tg levels.
- A rare SNP (rs778940395) in a TG gene regulatory element demonstrated a complete loss-of-function effect on basal and induced luciferase activity.
Conclusions:
- Both common and rare genetic variations within the Keap1/Nrf2 pathway significantly impact TG gene expression.
- These genetic variations can alter circulating Tg levels, highlighting their role in thyroid function regulation.
- The findings provide new insights into the genetic control of thyroid hormone homeostasis.
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