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Overview of how N32 and N34 elovanoids sustain sight by protecting retinal pigment epithelial cells and photoreceptors
- Source :
- Journal of Lipid Research, Vol 62, Iss, Pp 100058-(2021), Journal of Lipid Research
- Publication Year :
- 2021
- Publisher :
- Elsevier, 2021.
-
Abstract
- 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. Here, we review the structures and stereochemistry of novel elovanoid (ELV)-N32 and ELV-N34 to be ELV-N32: (14Z,17Z,20R,21E,23E,25Z,27S,29Z)-20,27-dihydroxydo-triaconta-14,17,21,23,25,29-hexaenoic acid; ELV-N34: (16Z,19Z,22R,23E,25E,27Z,29S,31Z)-22,29-dihydroxytetra-triaconta-16,19,23,25,27,31-hexaenoic acid. ELVs are low-abundance, high-potency, protective mediators. Their bioactivity includes enhancing of antiapoptotic and prosurvival protein expression with concomitant downregulation of proapoptotic proteins when RPE is confronted with uncompensated oxidative stress. ELVs also target PRC/RPE senescence gene programming, the senescence secretory phenotype in the interphotoreceptor matrix, as well as inflammaging (chronic, sterile, low-grade inflammation). An important lesson on neuroprotection is highlighted by the ELV mediators that target the terminally differentiated PRC and RPE, sustaining a beautifully synchronized renewal process. The role of ELVs in PRC and RPE viability and function uncovers insights on disease mechanisms and the development of therapeutics for age-related macular degeneration, Alzheimer's disease, and other pathologies.
- Subjects :
- 0301 basic medicine
UOS, uncompensated oxidative stress
030204 cardiovascular system & hematology
Mitochondrion
Interphotoreceptor matrix
PRC, photoreceptor cell
Biochemistry
Photoreceptor cell
interphotoreceptor matrix
NPD1, neuroprotectin D1
MALDI IMS
PC, phosphatidylcholine
0302 clinical medicine
Endocrinology
AMD, age-related macular degeneration
ERG, electroretinogram
OAβ, oligomeric amyloid-β
biology
Chemistry
very long-chain polyunsaturated fatty acids
IPM, interphotoreceptor matrix
membrane-type frizzled-related protein
Cell biology
medicine.anatomical_structure
Rhodopsin
ELV, elovanoid
AD, Alzheimer's disease
Visual phototransduction
neuroprotectin D1
AdipoR1, adiponectin receptor 1
PLA1, phospholipase A1
RPE, retinal pigment epithelium
ELOVL4, Elongation of very long-chain fatty acids-4
SASP, senescence-associated secretory phenotype
adiponectin receptor 1
QD415-436
Neuroprotection
03 medical and health sciences
Senescence gene programming
medicine
Photoreceptor Cells
age-related macular degeneration
Retinal pigment epithelium
Thematic Review Series
Cell Biology
C1q tumor necrosis factor-related protein-5
MFRP, membrane-type frizzled-related protein
VLC-PUFA, very long-chain PUFA,n-3
030104 developmental biology
elovanoids
Membrane biogenesis
biology.protein
sense organs
Subjects
Details
- Language :
- English
- ISSN :
- 00222275
- Volume :
- 62
- Database :
- OpenAIRE
- Journal :
- Journal of Lipid Research
- Accession number :
- edsair.doi.dedup.....e98d0e224bd36a4cd5291c64a985f411