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SIRT1-dependent deacetylation of Txnip H3K9ac is critical for exenatide-improved diabetic kidney disease.

Biomed Pharmacother · 2023

Last updated 2026-05-28

In a study on mice with diabetes-related kidney disease, the drug exenatide improved kidney damage and reduced the albumin-to-creatinine ratio—a measure of kidney function—by increasing levels of a protein called SIRT1 and decreasing levels of another protein, Txnip. These benefits were lost when SIRT1 was removed, showing that SIRT1 is necessary for exenatide’s effects. The drug also lowered Txnip levels in kidney cells by changing how Txnip’s genetic instructions are read, specifically by reducing a chemical mark (H3K9ac) on its DNA.

AI summary of the abstract below.

JournalBiomed Pharmacother, 2023
Citations9
Relative citation ratio1.31
NIH percentile60
Molecules exenatide
Conditions studied Type 2 Diabetes, Chronic Kidney Disease

Abstract

Glucagon-like peptide 1 receptor agonist exenatide (exendin-4) has potential protective capabilities against diabetic kidney disease (DKD). However, the underlying mechanism has not been fully elucidated. The expression of thioredoxin-interacting protein (Txnip) is upregulated during DKD progression by histone acetylation. Sirtuin 1 (SIRT1) is a deacetylase and is decreased in DKD, which indicates that it may regulate Txnip in this disease. Here, we used whole-body heterozygous Sirt1 knockout (Sirt1) and kidney-specific Sirt1 knockout (KSK) mice to investigate whether SIRT1 regulates Txnip via histone deacetylation in DKD and exenatide-alleviated DKD. Exenatide substantially improved renal pathological damage, decreased the albumin-to-creatinine ratio (ACR), upregulated SIRT1 expression, and downregulated Txnip expression in kidneys of high-fat diet-treated C57BL/6J mice. However, these effects diminished in Sirt1 and KSK mice under exenatide treatment. The downregulation of Txnip expression by exendin-4 in high-glucose-treated SV40 MES13 cells was hampered during Sirt1 knockdown. These results demonstrate that kidney SIRT1 is indispensable in exenatide-improved DKD and downregulation of Txnip expression. Exendin-4 mechanistically downregulated Txnip histone 3 lysine 9 acetylation (H3K9ac) in a SIRT1-dependent manner and decreased spliced X-box binding protein 1 (XBP1s) recruitment to the Txnip promoter. These findings provide epigenetic evidence elucidating the specific mechanism for exenatide-mediated DKD alleviation and highlight the importance of Txnip as a promising therapeutic target for DKD.

Verbatim abstract via PubMed 37742607 ↗

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