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. 2021 Aug 24;36(8):109526.
doi: 10.1016/j.celrep.2021.109526.

Epigenomic and transcriptional profiling identifies impaired glyoxylate detoxification in NAFLD as a risk factor for hyperoxaluria

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Free article

Epigenomic and transcriptional profiling identifies impaired glyoxylate detoxification in NAFLD as a risk factor for hyperoxaluria

Kathrin Gianmoena et al. Cell Rep. .
Free article

Abstract

Epigenetic modifications (e.g. DNA methylation) in NAFLD and their contribution to disease progression and extrahepatic complications are poorly explored. Here, we use an integrated epigenome and transcriptome analysis of mouse NAFLD hepatocytes and identify alterations in glyoxylate metabolism, a pathway relevant in kidney damage via oxalate release-a harmful waste product and kidney stone-promoting factor. Downregulation and hypermethylation of alanine-glyoxylate aminotransferase (Agxt), which detoxifies glyoxylate, preventing excessive oxalate accumulation, is accompanied by increased oxalate formation after metabolism of the precursor hydroxyproline. Viral-mediated Agxt transfer or inhibiting hydroxyproline catabolism rescues excessive oxalate release. In human steatotic hepatocytes, AGXT is also downregulated and hypermethylated, and in NAFLD adolescents, steatosis severity correlates with urinary oxalate excretion. Thus, this work identifies a reduced capacity of the steatotic liver to detoxify glyoxylate, triggering elevated oxalate, and provides a mechanistic explanation for the increased risk of kidney stones and chronic kidney disease in NAFLD patients.

Keywords: AGXT; DNA methylation; HAO1; LDHA; chromatin accessibility; gene expression; glucagon; glycolate; glyoxylate; hydroxyproline; oxalate.

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Conflict of interest statement

Declaration of interests K.N. is currently hired by AstraZeneca. P. Godoy is currently hired by Hoffman-La Roche, Ltd. A.S. is currently hired by Swiss-BioQuant AG. The authors declare no competing interests.

Comment in

  • Urolithiasis/Endourology.
    Assimos DG. Assimos DG. J Urol. 2022 Feb;207(2):462-464. doi: 10.1097/JU.0000000000002309. Epub 2021 Nov 12. J Urol. 2022. PMID: 34766839 No abstract available.

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