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Motor protein KIF13B orchestrates hepatic metabolism to prevent metabolic dysfunction-associated fatty liver disease

摘要Background:Kinesin family member 13B(KIF13B),a crucial motor protein,exerts multiple cellular biological functions.However,the implication of KIF13B in metabolic dysfunction-associated fatty liver disease(MAFLD)has not been explored yet.This study aimed to investigate KIF13B's role and underlying mechanism in MAFLD and proposes it as a potential pharmacological target.Methods:We assessed KIF13B expression in MAFLD patients and rodent models.The roles of Kif13b in lipid metabolism and MAFLD were investigated using whole-body Kif13b knockout mice,hepatocyte-specific Kif13b-deficient mice and hamsters exposed to different diets.The underlying mechanisms by which Kif13b governed hepatic lipid homeostasis and MAFLD progression were explored in vitro.Finally,the Kif13b's impact on atherosclerotic development was studied in the context of MAFLD.Results:KIF13B expression was reduced in patients and murine models with MAFLD.Rodents with global or liver-specific knockout of the Kif13b gene exhibit spontaneous hepatic steatosis,which is further exacerbated by different overnutrition diets.Overexpression of human KIF13B by lentivirus effectively prevented metabolic dysfunction-associated steatohepatitis(MASH)in methionine-choline-deficient diet(MCD)-fed mice.Furthermore,Kif13b deficiency accelerates atherosclerosis in the context of MAFLD.Mechanistically,Kif13b depletion increases hepatic lipid synthesis and impairs mitochondrial oxidative phosphorylation.Further screening reveals that Kif13b interacts with AMP-activated catalytic subunit alpha 1(AMPKα1)to regulate the phosphorylation of AMPKα1,governing mitochondrial homeostasis and suppressing sterol regulatory element binding protein 1(Srebp1)-mediated de novo lipogenesis in the liver.Conclusion:This work establishes a causal relationship between KIF13B deficiency and MAFLD,emphasizing KIF13B as a potential therapeutic target for treating MAFLD.

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作者单位 Institute of Cardiovascular Sciences,State Key Laboratory of Vascular Homeostasis and Remodeling,School of Basic Medical Sciences,Peking University,Beijing 100191,China;Department of Cardiology and Institute of Vascular Medicine,Peking University Third Hospital,Beijing 100191,China [1] Institute of Cardiovascular Sciences,State Key Laboratory of Vascular Homeostasis and Remodeling,School of Basic Medical Sciences,Peking University,Beijing 100191,China [2] Department of Biomedical Informatics,State Key Laboratory of Vascular Homeostasis and Remodeling,School of Basic Medical Sciences,Peking University,Beijing 100191,China [3] Department of Infectious Diseases,Shengjing Hospital of China Medical University,Shenyang 110134,China [4] State Key Laboratory of Natural and Biomimetic Drugs,Ministry of Education,Key Laboratory of Cell Proliferation and Differentiation,Beijing Key Laboratory of Cardiometabolic Molecular Medicine,Center for Life Sciences,Institute of Molecular Medicine,College of Future Technology,Peking University,Beijing 100871,China [5] Key Laboratory of Human Disease Comparative Medicine,National Health Commission of China(NHC),Beijing Engineering Research Center for Experimental Animal Models of Human Critical Diseases,Institute of Laboratory Animal Science,Chinese Academy of Medical Sciences,Peking Union Medicine College,Beijing 100021,China [6] Institute of Cardiovascular Sciences,State Key Laboratory of Vascular Homeostasis and Remodeling,School of Basic Medical Sciences,Peking University,Beijing 100191,China;Department of Cardiology and Institute of Vascular Medicine,Peking University Third Hospital,Beijing 100191,China;Research Center for Cardiopulmonary Rehabilitation,University of Health and Rehabilitation Sciences Qingdao Hospital(Qingdao Municipal Hospital),School of Health and Life Sciences,University of Health and Rehabilitation Sciences,Qingdao 266113,Shandong,China [7] Institute of Cardiovascular Sciences,State Key Laboratory of Vascular Homeostasis and Remodeling,School of Basic Medical Sciences,Peking University,Beijing 100191,China;Beijing Key Laboratory of Cardiovascular Receptors Research,Peking University Third Hospital,Beijing 100191,China [8]
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DOI 10.1186/s40779-025-00594-3
发布时间 2025-10-28(万方平台首次上网日期,不代表论文的发表时间)
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军事医学研究(英文版)

军事医学研究(英文版)

2025年12卷9期

1329-1349页

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