ELOVL蛋白:在代谢和神经退行性疾病之间的十字路口的非常长链和超长链脂肪酸

IF 3.5 2区 生物学 Q2 ENDOCRINOLOGY & METABOLISM Molecular genetics and metabolism Pub Date : 2025-03-01 Epub Date: 2025-02-04 DOI:10.1016/j.ymgme.2025.109050
Enza Ferrero , Frédéric M. Vaz , David Cheillan , Alfredo Brusco , Cecilia Marelli
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引用次数: 0

摘要

在脂质代谢中,脂肪酸(FA)延伸系统合成了一系列对各种生物功能至关重要的FAs。该体系的作用是延长FA碳链,生成≥C16的FAs,特别是超长链FAs (VLCFAs, C24-C26)和超长链FAs (ULCFAs, C28至≥C36)。内质网(ER)的伸长是通过四种内质网内嵌酶复合物的作用发生的,其中包括ELOVL蛋白。与引入双键的去饱和酶一起,这些过程显著增加了FAs的种类。VLCFAs和ULCFAs是复杂脂质的生物合成所必需的,特别是甘油(磷酸)脂、醚(磷酸)脂和鞘脂。因此,FA延伸系统是膜生物发生和脂质稳态的基础,也是与炎症和细胞增殖相关的信号通路的基础。本文综述了由ELOVL基因编码的延长酶,它催化了FA延长周期的第一步和限速步骤。我们总结了延长酶系统的生理作用,重点介绍了特征较少的ULCFAs,它们的生物学功能,以及用于研究它们的功能工具、生物标志物和脂质组学研究。此外,我们还讨论了ELOVL酶缺陷如何在代谢和神经退行性疾病的交叉点造成疾病,由内质网和高尔基体中的脂质代谢中断和错误折叠酶驱动。
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The ELOVL proteins: Very and ultra long-chain fatty acids at the crossroads between metabolic and neurodegenerative disorders
In lipid metabolism, the fatty acid (FA) elongation system synthesises a wide array of FAs, crucial for various biological functions. The role of this system is to lengthen FA carbon chains to produce FAs with ≥C16, and notably, very long-chain FAs (VLCFAs, C24-C26) and ultra long-chain FAs (ULCFAs, C28 to ≥C36). Elongation occurs in the endoplasmic reticulum (ER) through the actions of a complex of four ER-embedded enzymes, which includes the ELOVL proteins. Together with desaturases that introduce double bonds, these processes significantly increase the variety of FAs. VLCFAs and ULCFAs are required for the biosynthesis of complex lipids, notably glycero(phospho)lipids, ether(phospho)lipids and sphingolipids. The FA elongation system is therefore fundamental for membrane biogenesis and lipid homeostasis, and also for signalling pathways associated with inflammation and cell proliferation. This review focuses on the elongase enzymes, encoded by the ELOVL genes, which catalyze the first and rate-limiting step of the FA elongation cycle. We summarize the physiological roles of the elongase system, with emphasis on the less-characterized ULCFAs, their biological functions, and the functional tools, biomarkers and lipidomic studies used to study them. Additionally, we discuss how ELOVL enzyme defects contribute to disorders at the intersection of metabolic and neurodegenerative conditions, driven by disrupted lipid metabolism and misfolded enzymes in the ER and Golgi.
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来源期刊
Molecular genetics and metabolism
Molecular genetics and metabolism 生物-生化与分子生物学
CiteScore
5.90
自引率
7.90%
发文量
621
审稿时长
34 days
期刊介绍: Molecular Genetics and Metabolism contributes to the understanding of the metabolic and molecular basis of disease. This peer reviewed journal publishes articles describing investigations that use the tools of biochemical genetics and molecular genetics for studies of normal and disease states in humans and animal models.
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