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Journal of Lipid Research
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      • Thematic Review Series: Seeing 2020: Lipids and Lipid-Soluble Molecules in the Eye Thematic Review Series Thematic Review Series: Seeing 2020: Lipids and Lipid-Soluble Molecules in the Eye
        Open Access

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

        Journal of Lipid Research
        Vol. 62100030Published online: February 5, 2021
        • Gyening Kofi Yeboah
        • Ekaterina S. Lobanova
        • Richard S. Brush
        • Martin-Paul Agbaga
        Cited in Scopus: 0
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          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.
          Very long chain fatty acid-containing lipids: a decade of novel insights from the study of ELOVL4
        • Thematic Review Series Thematic Review Series: Seeing 2020: Lipids and Lipid-Soluble Molecules in the Eye
          Open Access

          Overview of how N32 and N34 elovanoids sustain sight by protecting retinal pigment epithelial cells and photoreceptors

          Journal of Lipid Research
          Vol. 62100058Published online: March 1, 2021
          • Nicolas G. Bazan
          Cited in Scopus: 0
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            The essential fatty acid DHA (22:6, omega-3 or n-3) is enriched in and required for the membrane biogenesis and function of photoreceptor cells (PRCs), synapses, mitochondria, etc. of the CNS. PRC DHA becomes an acyl chain at the sn-2 of phosphatidylcholine, amounting to more than 50% of the PRC outer segment phospholipids, where phototransduction takes place. Very long chain PUFAs (n-3, ≥ 28 carbons) are at the sn-1 of this phosphatidylcholine molecular species and interact with rhodopsin. PRC shed their tips (DHA-rich membrane disks) daily, which in turn are phagocytized by the retinal pigment epithelium (RPE), where DHA is recycled back to PRC inner segments to be used for the biogenesis of new photoreceptor membranes.
            Overview of how N32 and N34 elovanoids sustain sight by protecting retinal pigment epithelial cells and photoreceptors
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