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Deacetylation Assays to Unravel the Interplay between Sirtuins SIRT2 and Specific Protein-substrates
Published on: February 27, 2016
The deacetylase sirtuin 6 protects against kidney fibrosis by epigenetically blocking β-catenin target gene
Juan Cai1, Zhiwen Liu1, Xian Huang2
1Department of Nephrology, Hunan Key Laboratory of Kidney Disease and Blood Purification, Second Xiangya Hospital at Central South University, Changsha, Hunan, China.
Abstract:
Fibrosis is a common pathologic pathway of progressive kidney disease involving complex signaling networks. The deacetylase sirtuin 6 (sirt6) was recently implicated in kidney injury. However, it remains elusive whether and how sirt6 contributes to the regulation of kidney fibrosis. Here, we demonstrate that sirt6 protects against kidney interstitial fibrosis through epigenetic regulation of β-catenin signaling. Sirt6 is markedly upregulated during fibrogenesis following obstructed nephropathy and kidney ischemia-reperfusion injury. Pharmacological inhibition of sirt6 deacetylase activity aggravates kidney fibrosis in obstructed nephropathy. Consistently, knockdown of sirt6 in mouse kidney proximal tubular epithelial cells aggravates transforming growth factor-β-induced fibrosis in vitro. Mechanistically, sirt6 deficiency results in augmented expression of the downstream target proteins of β-catenin signaling. We further show that sirt6 interacts with β-catenin during transforming growth factor-β treatment and binds to the promoters of β-catenin target genes, resulting in the deacetylation of histone H3K56 to prevent the transcription of fibrosis-related genes. Thus, our data reveal the anti-fibrotic function of sirt6 by epigenetically attenuating β-catenin target gene expression.
Insights
Sirtuin 6 (sirt6) protects against kidney fibrosis by epigenetically regulating β-catenin signaling. This protein deacetylates histone H3K56, preventing the transcription of fibrosis-related genes and offering a potential therapeutic target for kidney disease.
Area of Science:
- Nephrology
- Epigenetics
- Molecular Biology
Background:
- Fibrosis is a key pathway in progressive kidney disease.
- Sirtuin 6 (sirt6) is implicated in kidney injury, but its role in fibrosis is unclear.
Purpose of the Study:
- To investigate the role of sirt6 in kidney interstitial fibrosis.
- To elucidate the mechanism by which sirt6 regulates kidney fibrosis.
Main Methods:
- Investigated sirt6 expression in mouse models of kidney injury (obstructed nephropathy, ischemia-reperfusion).
- Utilized pharmacological inhibition and knockdown of sirt6 in vitro and in vivo.
- Examined the interaction of sirt6 with β-catenin and its binding to target gene promoters.
Main Results:
- Sirt6 is upregulated during kidney fibrogenesis.
- Inhibition or knockdown of sirt6 exacerbates kidney fibrosis.
- Sirt6 deficiency leads to increased expression of β-catenin target proteins.
- Sirt6 deacetylates histone H3K56 at the promoters of β-catenin target genes.
Conclusions:
- Sirt6 exhibits an anti-fibrotic function in the kidney.
- Sirt6 protects against kidney fibrosis through epigenetic regulation of β-catenin signaling.
- Targeting sirt6 may offer a novel therapeutic strategy for kidney fibrosis.

