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含超长链脂肪酸的脂质:ELOVL4 研究带来的十年新见解。

Very long chain fatty acid-containing lipids: a decade of novel insights from the study of ELOVL4.

机构信息

Department of Cell Biology, University of Oklahoma Health Sciences Center, Oklahoma City, OK, USA.

Department of Ophthalmology Research, University of Florida, Gainesville, FL, USA.

出版信息

J Lipid Res. 2021;62:100030. doi: 10.1016/j.jlr.2021.100030. Epub 2021 Feb 6.

Abstract

Lipids play essential roles in maintaining cell structure and function by modulating membrane fluidity and cell signaling. The fatty acid elongase-4 (ELOVL4) protein, expressed in retina, brain, Meibomian glands, skin, testes and sperm, is an essential enzyme that mediates tissue-specific biosynthesis of both VLC-PUFA and VLC-saturated fatty acids (VLC-SFA). These fatty acids play critical roles in maintaining retina and brain function, neuroprotection, skin permeability barrier maintenance, and sperm function, among other important cellular processes. Mutations in ELOVL4 that affect biosynthesis of these fatty acids cause several distinct tissue-specific human disorders that include blindness, age-related cerebellar atrophy and ataxia, skin disorders, early-childhood seizures, mental retardation, and mortality, which underscores the essential roles of ELOVL4 products for life. However, the mechanisms by which one tissue makes VLC-PUFA and another makes VLC-SFA, and how these fatty acids exert their important functional roles in each tissue, remain unknown. This review summarizes research over that last decade that has contributed to our current understanding of the role of ELOVL4 and its products in cellular function. In the retina, VLC-PUFA and their bioactive "Elovanoids" are essential for retinal function. In the brain, VLC-SFA are enriched in synaptic vesicles and mediate neuronal signaling by determining the rate of neurotransmitter release essential for normal neuronal function. These findings point to ELOVL4 and its products as being essential for life. Therefore, mutations and/or age-related epigenetic modifications of fatty acid biosynthetic gene activity that affect VLC-SFA and VLC-PUFA biosynthesis contribute to age-related dysfunction of ELOVL4-expressing tissues.

摘要

脂质通过调节膜流动性和细胞信号转导,在维持细胞结构和功能方面发挥着重要作用。脂肪酸延长酶-4(ELOVL4)蛋白在视网膜、大脑、睑板腺、皮肤、睾丸和精子中表达,是一种必需的酶,介导组织特异性长链多不饱和脂肪酸(VLC-PUFA)和长链饱和脂肪酸(VLC-SFA)的生物合成。这些脂肪酸在维持视网膜和大脑功能、神经保护、皮肤通透性屏障维持以及精子功能等重要细胞过程中起着关键作用。影响这些脂肪酸生物合成的 ELOVL4 突变导致几种不同的组织特异性人类疾病,包括失明、与年龄相关的小脑萎缩和共济失调、皮肤疾病、幼儿癫痫发作、智力迟钝和死亡,这突显了 ELOVL4 产物对生命的重要作用。然而,一种组织如何产生 VLC-PUFA,另一种组织如何产生 VLC-SFA,以及这些脂肪酸如何在每种组织中发挥其重要功能作用,这些仍然未知。本综述总结了过去十年的研究,这些研究有助于我们目前对 ELOVL4 及其产物在细胞功能中的作用的理解。在视网膜中,VLC-PUFA 和它们的生物活性“Elovanoids”是视网膜功能所必需的。在大脑中,VLC-SFA 富含在突触小泡中,并通过决定神经递质释放的速率来介导神经元信号转导,而神经递质释放对于正常神经元功能是必需的。这些发现表明 ELOVL4 及其产物对于生命是必需的。因此,影响 VLC-SFA 和 VLC-PUFA 生物合成的脂肪酸生物合成基因活性的突变和/或与年龄相关的表观遗传修饰,导致 ELOVL4 表达组织的与年龄相关的功能障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8e6/8042400/81c7c3cd1c5e/fx1.jpg

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