Aug 2026· Gut· pp. gutjnl-2026-339656· 0 citations· 34 references
Medicine
TL;DR
This study identifies KIF13B as a novel regulator of hepatic lipid homeostasis in ALD via the KIF13B-KPNA2-PPARα axis, enhancing KPNA2 mediated nuclear import, particularly in combination with PPARα activation, represents a promising therapeutic strategy for ALD.
Abstract
Background
Alcohol-associated liver disease (ALD) is a major global health burden with no approved targeted therapies. Emerging evidence implicates kinesin family member 13B (KIF13B) in lipid metabolism, primarily in cardiovascular disease but its role in ALD remains unexplored.
Objective
To investigate the role and underlying mechanism of KIF13B in ALD pathogenesis and evaluate its therapeutic potential.
Design
ALD was modelled in global and hepatocyte-specific Kif13b knockout mice using the modified chronic-plus-binge ethanol-feeding model (the NIAAA model). Human liver tissues from patients with ALD were analysed for clinical relevance. In vitro studies employed primary mouse hepatocytes and HepG2 cells treated with ethanol and palmitic acid.
Results
Hepatic KIF13B expression was markedly reduced in both ethanol-fed mice and patients with ALD. KIF13B deficiency exacerbated ethanol-induced steatosis by impairing peroxisome proliferator-activated receptor alpha (PPARα) nuclear translocation without affecting its total expression. Mechanistically, KIF13B directly bound and stabilised karyopherin subunit alpha 2 (KPNA2), a critical nuclear import factor, thereby facilitating PPARα nuclear localisation and transcriptional activation of fatty acid oxidation genes. While the PPARα agonist fenofibrate effectively alleviated steatosis in wild-type mice, its efficacy was blunted in Kif13b-deficient mice. Conversely, the KPNA2-targeting compound foslinanib restored PPARα nuclear transport and ameliorated steatosis in Kif13b-deficient settings. Notably, combined treatment with fenofibrate and the KPNA2-targeting compound foslinanib exerted a more pronounced therapeutic effect in ameliorating hepatic steatosis.
Conclusions
This study identifies KIF13B as a novel regulator of hepatic lipid homeostasis in ALD via the KIF13B-KPNA2-PPARα axis, enhancing KPNA2 mediated nuclear import, particularly in combination with PPARα activation, represents a promising therapeutic strategy for ALD.
Emerging evidence links circadian disruption to metabolic dysfunction-associated steatotic liver disease (MASLD), but the underlying mechanisms remain elusive. NPAS2, a core circadian regulator, has an undefined role in the pathogenesis of MASLD and its progression to hepatocellular carcinoma (HCC). This study aime...
Jiao Mu, Jia-Li Ye, Jia-Hao Zhang et al.· Cell Death & Disease· 0 citations
Alcoholic liver disease (ALD) is a global health burden with limited therapeutic options. The pathogenesis of ALD involves hepatocyte death and inflammation, but the key regulatory mechanisms remain incompletely defined. Receptor-interacting protein kinase 1 (RIPK1) is a critical signaling molecule with distinct ki...
Weigao Zhang, Hu Liu, Yun-Feng Zhu et al.· Cell Death & Disease· 0 citations
BACKGROUND
Programmed cell death factor 4 (PDCD4) has been implicated in various metabolic disorders. However, its role and underlying mechanisms in metabolic dysfunction-associated steatotic liver disease (MASLD) have not been fully elucidated.
PURPOSE
This study aimed to define the role of PDCD4 in hepatic steatosi...
Xiao-Na Cheng, Kai-Kai Lu, Lu-Yun Yang et al.· Phytomedicine· 0 citations
Findings establish the SLC25A1-regulated metabolic axis as a promising therapeutic target and offer a robust preclinical proof-of-concept for targeted gene therapies against liver fibrosis.
Shu-Qin Xue, Xiu-Juan Yin, Sicheng Shu et al.· Pharmacological Research· 0 citations
Metabolic dysfunction–associated steatotic liver disease (MASLD) has emerged as a global health concern. Nevertheless, its underlying pathological mechanisms remain poorly understood. Here, we showed that E3 ubiquitin ligase RING finger protein 10 (RNF10) protein levels were positively correlated with MASLD in both mic...
Chun-Yuan Du, Yin-Liang Zhang, Hong-Kai Chang et al.· Journal of Clinical Investig...· 0 citations
BACKGROUND & AIMS
Metabolic dysfunction-associated steatotic liver disease (MASLD) is one of the most prevalent chronic liver diseases in modern society. Heat shock factor 1 (HSF1) is a transcription factor that orchestrates cellular responses and closely associate with metabolic diseases. However, the specific hepatic...
Yuxiang Cao, Xiangcheng Fan, Meiyao Meng et al.· Metabolism: Clinical and Exp...· 0 citations
We use cookies to run the site and, with your consent, for analytics and to show ads.
See our Cookie Policy.