Batayneh_2025_J.Lipid.Res__100887

Reference

Title : Loss of hepatic carboxylesterase 3 (CES3) prevents the development of MASLD in mice - Batayneh_2025_J.Lipid.Res__100887
Author(s) : Batayneh Z , Pan X , Gopoju R , Hu S , Chen S , Wang J , Wang H , Gunawardana L , Kasumov T , Zhang Y
Ref : J Lipid Res , :100887 , 2025
Abstract :

Carboxylesterases (CES) are essential for metabolizing compounds with ester, thioester, and amide bonds. While the roles of CES1 and CES2 in lipid metabolism have been well established, little is known about the role of CES3 in lipid metabolism or metabolic dysfunction-associated steatotic liver disease (MASLD). Here, we report the localization and nutritional regulation of CES3 and its role in MASLD development in mice. CES3 is expressed exclusively in the liver and localizes to the endoplasmic reticulum (ER). Hepatic CES3 is reduced in patients with metabolic dysfunction-associated steatohepatitis (MASH) and mice fed a Western diet. Unexpectedly, loss of CES3 alleviates Western diet-induced MASLD, whereas liver-specific overexpression of human CES3 worsens Western diet-induced MASLD. Mechanistically, loss of CES3 reduces de novo lipogenesis and promotes the secretion of very low-density lipoprotein (VLDL) - triglycerides. Thus, the current study has identified a novel role of CES3 in hepatic lipid metabolism and MASLD.

PubMedSearch : Batayneh_2025_J.Lipid.Res__100887
PubMedID: 40865609
Gene_locus related to this paper: human-CES3 , mouse-Ces3a , mouse-Ces3b

Related information

Gene_locus human-CES3    mouse-Ces3a    mouse-Ces3b

Citations formats

Batayneh Z, Pan X, Gopoju R, Hu S, Chen S, Wang J, Wang H, Gunawardana L, Kasumov T, Zhang Y (2025)
Loss of hepatic carboxylesterase 3 (CES3) prevents the development of MASLD in mice
J Lipid Res :100887

Batayneh Z, Pan X, Gopoju R, Hu S, Chen S, Wang J, Wang H, Gunawardana L, Kasumov T, Zhang Y (2025)
J Lipid Res :100887