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Isolation and characterization of a retinal pigment epithelial cell fluorophore: An all-trans-retinal dimer conjugate

机译:视网膜色素上皮细胞荧光团的分离和表征:全跨视网膜二聚体缀合物

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摘要

Several lines of investigation suggest that the nondegradable fluorophores that accumulate as lipofuscin in retinal pigment epithelium (RPE) cells contribute to the etiology of macular degeneration. Despite evidence that much of this fluorescent material may originate as inadvertent products of the retinoid cycle, the enzymatic pathway by which the 11-cis-retinal chromophore of rhodopsin is generated, the only fluorophores of the RPE to be characterized as yet have been A2E and its isomers. Here, we report the isolation and structural characterization of an additional RPE lipofuscin fluorophore that originates as a condensation product of two molecules of all-trans-retinal (ATR) dimer and forms a protonated Schiff base conjugate with phosphatidylethanolamine (PE), the latter conjugate (ATR dimer-PE) having UV-visible absorbance maxima at 285 and 506 nm. ATR dimer was found to form natively in bleached rod outer segments in vitro and when rod outer segments were incubated with ATR. HPLC analysis of eyecups that included RPE and isolated neural retina from Abcr -/- mice and RPE isolated from human donor eyes revealed the presence of a pigment with the same UV-visible absorbance and retention time as synthetic ATR dimer-PE conjugate. Evidence that ATR dimer undergoes a photooxidation process involving the addition of oxygens at double bonds as well as an aromatic demethylation also may indicate a role for this molecule, or its derivatives, in the photoreactivity of RPE lipofuscin.
机译:几项研究表明,在视网膜色素上皮(RPE)细胞中以脂褐素形式积累的不可降解的荧光团有助于黄斑变性的病因。尽管有证据表明许多这种荧光物质可能源自类视色素周期的无意产物,即视紫红质的11-顺-视网膜生色团的酶促途径,RPE仅有的表征为A2E和它的异构体。在这里,我们报告了另一种RPE脂褐素荧光团的分离和结构表征,该荧光团起源于两个分子的全反式视网膜(ATR)二聚体的缩合产物,并与磷脂酰乙醇胺(PE)形成质子化的席夫碱共轭物,后者(ATR二聚体-PE)在285和506 nm处具有最大的紫外线可见吸收率。发现ATR二聚体在体外在漂白的杆外部片段中自然形成,而当杆外部片段与ATR一起孵育时。眼杯的HPLC分析包括从Abcr-/-小鼠分离的RPE和分离的神经视网膜以及从人供体眼睛分离的RPE,发现存在与合成ATR二聚体-PE共轭物具有相同的紫外线可见吸收和保留时间的色素。 ATR二聚体经历了光氧化过程的证据,该过程涉及在双键处添加氧以及芳族脱甲基化,也可能表明该分子或其衍生物在RPE脂褐素的光反应性中起作用。

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