Aug 2026· EBioMedicine· Vol 131, pp. 106429· 0 citations· 48 references
Medicine
TL;DR
The Hsd17b13P260S mouse model is suggested to be translatable towards human physiology and useful for understanding the protective mechanisms of the human HSD17B13 P260S LoF variant, which protects against progression from MASLD to MASH and more severe types of liver disease.
Abstract
Summary Background Metabolic dysfunction-associated steatotic liver disease (MASLD) is a prevalent liver disease that can progress to metabolic dysfunction-associated steatohepatitis (MASH), a condition marked by inflammation and fibrosis that increases the risk of cirrhosis, liver failure, and hepatocellular carcinoma. Loss-of-function (LoF) variants of hydroxysteroid 17-β dehydrogenase 13 (HSD17B13), a lipid droplet–associated enzyme, protect against progression from MASLD to MASH and more severe types of liver disease. Methods We generated a knock-in mouse model harbouring the human orthologue of the HSD17B13 P260S patient variant and investigated the molecular mechanisms underlying its protective phenotype upon dietary challenge, by applying comprehensive spatial transcriptomics, histological analysis, matrix-assisted laser desorption/ionisation (MALDI) imaging, and in vitro cellular characterisation. Findings Male Hsd17b13P260S mice showed reduced liver fibrosis (p < 0.0001) upon dietary challenge, reflecting the protective effect seen in patients and supporting the model's translatability. Despite similar transcript levels, HSD17B13 P260S protein in the liver was significantly lower compared to wild-type (WT). Interestingly, HSD17B13 WT protein lost its periportal zonation when switching mice from a chow to a high trans-fat diet (HTF), whereas the HSD17B13 P260S protein retained periportal expression. Male Hsd17b13P260S mice showed increased steatosis (p < 0.05), while spatial transcriptomics revealed the suppression of pro-fibrotic and immune response-related genes. MALDI imaging identified significant differences in phospholipids across genotypes and diets. Both HSD17B13 WT and P260S variant protein localised to lipid droplets, but the latter showed reduced enzymatic activity. Lastly, we observed reduced expression of CCND1 (p < 0.05) and an increase in multinucleated hepatocytes (p < 0.0001) in livers from male Hsd17b13P260S compared to WT upon HTF feeding. Interpretation Our study suggests that the Hsd17b13P260S mouse model is translatable towards human physiology and useful for understanding the protective mechanisms of the human HSD17B13 P260S LoF variant. Lower HSD17B13 P260S protein abundance, reduced enzymatic activity and retained periportal localisation may contribute to protection from liver disease progression by maintaining zonated transcriptomic and lipidomic profiles. These findings provide key insights into HSD17B13 biology and its role in MASLD to MASH progression. Funding Novartis Biomedical Research Postdoctoral program, Sigrid Jusélius Foundation, Forendo Pharma.
BACKGROUND
Metabolic dysfunction-associated steatotic liver disease (MASLD) is a leading global health burden, yet the regulatory nodes linking hepatic immune dysregulation to metabolic perturbations remain incompletely understood.
METHODS
We integrated bulk and single-cell RNA sequencing (scRNA-seq) to identify core...
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Metabolic dysfunction-associated steatotic liver disease (MASLD) is the most prevalent chronic liver disease worldwide, yet approved pharmacotherapies remain limited. The ovarian tumor domain-containing protein 1 (OTUD1) has been implicated in metabolic regulation, but its role in MASLD remains unclear. OTUD1 expressio...
Mei-Qin Huang, Si-Yi Wei, Meng-Zhen-Yuan-Hua Li et al.· Molecular Biomedicine· 0 citations
BACKGROUND & AIMS
Metabolic dysfunction-associated steatohepatitis (MASH) is a prevalent chronic liver disease characterized by steatosis, inflammation, and hepatocyte damage, with or without fibrosis. Robust preclinical models that represent the clinical features of MASH are critical for drug development. We aimed to...
R. Leke, Jennifer Y. Tan, Stephanie Ling et al.· Cellular and Molecular Gastr...· 0 citations
Type 2 diabetes mellitus (T2DM) is a major age-associated metabolic disease, and aging substantially contributes to the increasing burden and progression of chronic complications, including diabetic kidney disease (DKD). However, the molecular mechanisms underlying changes in renal susceptibility during disease progres...
J. Ihle, Luisa Duong, N. Ziller et al.· International Journal of Mol...· 0 citations
Metabolic dysfunction-associated steatohepatitis (MASH) is a progressive form of metabolic dysfunction-associated steatotic liver disease (MASLD) and a growing cause of chronic liver disease worldwide. Although the NLRP3 inflammasome has been implicated in MASH pathogenesis, its contribution remains controversial acros...
Daisuke Taguchi, Y. Shirakami, Toshihide Maeda et al.· Biochemistry and Biophysics...· 0 citations
BACKGROUND
The factors that determine when genetic susceptibility to metabolic dysfunction-associated steatotic liver disease (MASLD) progresses to clinically significant liver injury remain incompletely understood.
OBJECTIVE
We investigated whether disruption of the intestinal host-microbiota interface acts as a con...
Madhuri Haque, T. Lesker, U. Rolle-Kampczyk et al.· Gut· 0 citations
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