Disturbed intracellular folate homeostasis impairs autophagic flux and increases hepatocytic lipid accumulation.

IF 4.4 1区 生物学 Q1 BIOLOGY BMC Biology Pub Date : 2024-07-02 DOI:10.1186/s12915-024-01946-6
Wan-Yu Chi, Gang-Hui Lee, Ming-Jer Tang, Bing-Hung Chen, Wei-Ling Lin, Tzu-Fun Fu
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Abstract

Background: Metabolic associated fatty liver disease (MAFLD), a prevalent liver disorder affecting one-third of the global population, encompasses a spectrum ranging from fatty liver to severe hepatic steatosis. Both genetic and lifestyle factors, particularly diet and nutrition, contribute to its etiology. Folate deficiency, a frequently encountered type of malnutrition, has been associated with the pathogenesis of MAFLD and shown to impact lipid deposition. However, the underlying mechanisms of this relationship remain incompletely understood. We investigated the impact of disturbed folate-mediated one-carbon metabolism (OCM) on hepatic lipid metabolism both in vitro using human hepatoma cells and in vivo using transgenic fluorescent zebrafish displaying extent-, stage-, and duration-controllable folate deficiency upon induction.

Results: Disturbed folate-mediated one-carbon metabolism, either by inducing folate deficiency or adding anti-folate drug, compromises autophagy and causes lipid accumulation in liver cells. Disturbed folate status down-regulates cathepsin L, a key enzyme involved in autophagy, through inhibiting mTOR signaling. Interfered mitochondrial biology, including mitochondria relocation and increased fusion-fission dynamics, also occurs in folate-deficient hepatocytes. Folate supplementation effectively mitigated the impaired autophagy and lipid accumulation caused by the inhibition of cathepsin L activity, even when the inhibition was not directly related to folate deficiency.

Conclusions: Disruption of folate-mediated OCM diminishes cathepsin L expression and impedes autophagy via mTOR signaling, leading to lipid accumulation within hepatocytes. These findings underscore the crucial role of folate in modulating autophagic processes and regulating lipid metabolism in the liver.

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细胞内叶酸平衡失调会损害自噬通量,增加肝细胞脂质积累。
背景:代谢相关性脂肪肝(MAFLD)是一种普遍存在的肝脏疾病,影响着全球三分之一的人口。遗传和生活方式因素,尤其是饮食和营养,都是其病因。叶酸缺乏是一种常见的营养不良类型,它与 MAFLD 的发病机制有关,并被证明会影响脂质沉积。然而,人们对这种关系的内在机制仍不甚了解。我们在体外使用人类肝癌细胞,在体内使用转基因荧光斑马鱼,研究了叶酸介导的一碳代谢(OCM)紊乱对肝脏脂质代谢的影响:结果:通过诱导叶酸缺乏或添加抗叶酸药物,叶酸介导的一碳代谢紊乱会损害自噬,并导致肝细胞中的脂质积累。紊乱的叶酸状态会通过抑制 mTOR 信号转导,下调参与自噬的关键酶 cathepsin L。叶酸缺乏的肝细胞也会出现线粒体生物学干扰,包括线粒体迁移和融合-裂变动力学增加。补充叶酸能有效缓解抑制酪蛋白酶L活性所导致的自噬受损和脂质积累,即使这种抑制与叶酸缺乏没有直接关系:结论:叶酸介导的 OCM 干扰会降低酪蛋白酶 L 的表达,并通过 mTOR 信号转导阻碍自噬,从而导致肝细胞内的脂质积累。这些发现强调了叶酸在调节肝脏自噬过程和脂质代谢中的关键作用。
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来源期刊
BMC Biology
BMC Biology 生物-生物学
CiteScore
7.80
自引率
1.90%
发文量
260
审稿时长
3 months
期刊介绍: BMC Biology is a broad scope journal covering all areas of biology. Our content includes research articles, new methods and tools. BMC Biology also publishes reviews, Q&A, and commentaries.
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