Hydroxysteroid 17-beta dehydrogenase 13 (Hsd17b13) knockdown attenuates liver steatosis in high-fat diet obese mice
Mahmood, S.; Morrice, N. Z.; Thompson, D.; Milanizadeh, S.; Wilson, S.; Whitfield, P. D.; Mcilroy, G. D.; Rochford, J. J.; Mody, N.
Show abstract
Hydroxysteroid 17-beta dehydrogenase 13 (HSD17B13) loss-of-function gene variants are associated with decreased risk of metabolic dysfunction-associated steatotic liver disease (MASLD). Our RNA-seq analysis of steatotic liver from obese mice -/+ Fenretinide treatment identified major beneficial effects of Fenretinide on hepatic gene expression including Hsd17b13. We sought to determine the relationship between Hsd17b13 expression and MASLD and to validate it as a therapeutic target by liver-specific knockdown. Hsd17b13 expression, which is unique to hepatocytes and associated with the lipid-droplet, was elevated in multiple models of MASLD and normalised with prevention of obesity and steatotic liver. Direct, liver- specific, shRNA-mediated knockdown of Hsd17b13 (shHsd17b13) in high-fat diet (HFD)-obese mice, markedly improved hepatic steatosis with no effect on body weight, adiposity or glycaemia. shHsd17b13 decreased elevated serum ALT, serum FGF21 levels and markers of liver fibrosis e.g. Timp2. shHsd17b13 knockdown in HFD-obese mice and Hsd17b13 overexpression in cells reciprocally regulated expression of lipid metabolism genes e.g. Cd36. Global lipidomic analysis of liver tissue revealed a major decrease in diacylglycerols (e.g. DAG 34:3) with shHsd17b13 and an increase in phosphatidylcholines containing polyunsaturated fatty acids (PUFA) e.g. PC 34:3 and PC 42:10. Expression of key genes involved in phospholipid and PUFA metabolism e.g. Cept1, were also reciprocally regulated suggesting a potential mechanism of Hsd17b13 biological function and role in MASLD. In conclusion, Hsd17b13 knockdown in HFD-obese adult mice was able to alleviate MASLD via regulation of fatty acid and phospholipid metabolism, thereby confirming HSD17B13 as a genuine therapeutic target for MASLD and development of liver fibrosis. KEY POINTSO_LIHSD17B13 loss-of-function gene variants are associated with decreased risk of metabolic dysfunction-associated (MA) steatotic liver disease and steatohepatitis (MASLD and MASH). C_LIO_LIRNA-seq analysis of steatotic liver identified beneficial effects of Fenretinide on hepatic gene expression including downregulation of Hsd17b13. C_LIO_LILiver-specific shRNA knockdown of Hsd17b13 in obese mice markedly improved hepatic steatosis and markers of liver health e.g. serum ALT, serum Fgf21 levels. C_LIO_LIHsd17b13 influenced expression of lipid/phospholipid metabolism genes e.g. Cd36 and Cept1 and phosphatidylcholines PC 34:3 and PC 42:10. C_LIO_LIOur study suggests a mechanism of HSD17B13s biological function and the strong rationale behind targeting HSD17B13 for MASLD/MASH. C_LI
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Melanocortin 1 receptor regulates cholesterol and bile acid metabolism in the liver 97%
- A Host Enzyme Reduces Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD) by Inactivating Intestinal Lipopolysaccharide 97%
- TXN, a Xanthohumol Derivative, Attenuates High-Fat Diet Induced Hepatic Steatosis by Antagonizing PPARγ 97%
Similar papers in this journal
- PGC-1α isoforms coordinate to balance hepatic metabolism and apoptosis in inflammatory environments 96%
- Antisense oligonucleotides against monoacylglycerol acyltransferase 1 (Mogat1) improve glucose metabolism independently of Mogat1 96%
- Inhibition of Mitochondrial Fission and iNOS in the Dorsal Vagal Complex Protects from Overeating and Weight Gain 96%
Similar papers in this journal
- Differences in metabolic and liver pathobiology induced by two dietary mouse models of nonalcoholic fatty liver disease 96%
- CYP1A1/1A2 enzymes mediate glucose homeostasis and insulin secretion in mice in a sex-specific manner 95%
- The Prorenin Receptor and its Soluble Form Contribute to Lipid Homeostasis 95%
Similar papers in this journal
- ATGL-dependent white adipose tissue lipolysis controls hepatocyte PPARα activity 97%
- Brown adipose expansion and remission of glycemic dysfunction in obese SM/J mice 96%
- Integration of metabolomic and transcriptomic analyses reveals novel regulatory functions of the ChREBP transcription factor in energy metabolism 95%
Similar papers in this journal
- NUPR1 protects liver from lipotoxic injury by improving the endoplasmic reticulum stress response 97%
- Sustained anti-obesity effects of life-style change and anti-inflammatory interventions after conditional inactivation of the activin receptor ALK7 96%
- Creld2 function during unfolded protein response is essential for liver metabolism homeostasis 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.