Literature DB >> 34433051

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

Kathrin Gianmoena1, Nina Gasparoni2, Adelina Jashari1, Philipp Gabrys1, Katharina Grgas1, Ahmed Ghallab3, Karl Nordström2, Gilles Gasparoni2, Jörg Reinders1, Karolina Edlund1, Patricio Godoy1, Alexander Schriewer4, Heiko Hayen4, Christian A Hudert5, Georg Damm6, Daniel Seehofer6, Thomas S Weiss7, Peter Boor8, Hans-Joachim Anders9, Manga Motrapu9, Peter Jansen10, Tobias S Schiergens11, Maren Falk-Paulsen12, Philip Rosenstiel12, Clivia Lisowski13, Eduardo Salido14, Rosemarie Marchan1, Jörn Walter2, Jan G Hengstler1, Cristina Cadenas15.   

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.
Copyright © 2021 The Authors. Published by Elsevier Inc. All rights reserved.

Entities:  

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

Mesh:

Substances:

Year:  2021        PMID: 34433051     DOI: 10.1016/j.celrep.2021.109526

Source DB:  PubMed          Journal:  Cell Rep            Impact factor:   9.423


  3 in total

1.  Role of insulin resistance and the gut microbiome on urine oxalate excretion in ob/ob mice.

Authors:  Hong Xiang; Haoqing Chen; Yuanyuan Liu; Dylan Dodd; Alan C Pao
Journal:  Physiol Rep       Date:  2022-07

2.  Colchicine overdose impairs the capacity of Kupffer cells to clear foreign particles and endotoxins.

Authors:  Jan G Hengstler; Ahmed Ghallab; Reham Hassan; Maiju Myllys; Lisa Brackhagen; Zaynab Hobloss; Daniela González; Abdel-Latif Seddek; Adrian Friebel; Stefan Hoehme; Rosemarie Marchan; Michael Trauner
Journal:  Arch Toxicol       Date:  2022-09-14       Impact factor: 6.168

3.  Hypoalbuminemia affects the spatio-temporal tissue distribution of ochratoxin A in liver and kidneys: consequences for organ toxicity.

Authors:  Gisela H Degen; Jan G Hengstler; Ahmed Ghallab; Reham Hassan; Adrian Friebel; Lisa Brackhagen; Zaynab Hobloss; Maiju Myllys; Daniela González; Wiebke Albrecht; Elsayed S I Mohammed; Abdel-Latif Seddek; Rosemarie Marchan; Cristina Cadenas; Benedikt Cramer; Hans-Ulrich Humpf; Lukas Hartl; Benedikt Simbrunner; Thomas Reiberger; Michael Trauner; Stefan Hoehme
Journal:  Arch Toxicol       Date:  2022-08-13       Impact factor: 6.168

  3 in total

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