首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Structural characterization of bisretinoid A2E photocleavage products and implications for age-related macular degeneration
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Structural characterization of bisretinoid A2E photocleavage products and implications for age-related macular degeneration

机译:双维A2E光解产物的结构表征及其与年龄相关的黄斑变性的意义

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摘要

Fluorescent bisretinoids, such as A2E and all-trans-retinal dimer, form as a by-product of vitamin A cycling in retina and accumulate in retinal pigment epithelial (RPE) cells as lipofuscin pigments. These pigments are implicated in pathological mechanisms involved in several vision-threatening diseases including age-related macular degeneration. Efforts to understand damaging events initiated by these bisretinoids have revealed that photoexcitation of A2E by wavelengths in the visible spectrum leads to singlet oxygen production and photooxidation of A2E. Here we have employed liquid chromatography coupled to electrospray ionization mass spectrometry together with tandem mass spectrometry (MS/MS), to demonstrate that A2E also undergoes photooxidation-induced degradation and we have elucidated the structures of some of the aldehyde-bearing cleavage products. Studies in which A2E was incubated with a singlet oxygen generator yielded results consistent with a mechanism involving bisretinoid photocleavage at sites of singlet molecular oxygen addition. We provide evidence that one of the products released by A2E photodegradation is methylglyoxal, a low molecular weight reactive dicarbonyl with the capacity to form advanced glycation end products. Methylglyoxal is already known to be generated by carbohydrate and lipid oxidation; this is the first report of its production via bisretinoid photocleavage. It is significant that AGE-modified proteins are detected in deposits (drusen) that accumulate below RPE cells in vivo; drusen have been linked to age-related macular degeneration pathogenesis. Whereas various processes play a role in drusen formation, these findings are indicative of a contribution from lipofuscin photooxidation in RPE.
机译:荧光双视黄酮(例如A2E和全跨视网膜二聚体)是维生素A在视网膜中循环的副产物,并以脂褐素的形式积聚在视网膜色素上皮(RPE)细胞中。这些色素与涉及多种视力威胁疾病(包括与年龄有关的黄斑变性)的病理机制有关。理解由这些双视黄醛类化合物引发的破坏性事件的努力表明,可见光谱中的波长对A2E进行光激发会导致单线态氧的产生和A2E的光氧化。在这里,我们将液相色谱与电喷雾电离质谱和串联质谱(MS / MS)结合使用,以证明A2E也经历了光氧化诱导的降解,并且我们阐明了一些含醛裂解产物的结构。将A2E与单线态氧生成器一起孵育的研究得出的结果与涉及在单线态分子氧加成位点处的类视黄醇光解机理有关。我们提供的证据表明,A2E光降解释放的产物之一是甲基乙二醛,一种低分子量的反应性二羰基,具有形成高级糖基化终产物的能力。甲基乙二醛已知是由碳水化合物和脂质氧化产生的。这是通过类视黄醇光解法生产的第一份报告。有意义的是,在体内RPE细胞下方积聚的沉积物中检测到了AGE修饰的蛋白质(鸟嘌呤)。玻璃疣与年龄相关的黄斑变性发病机制有关。尽管各种过程都在玻璃疣的形成中起作用,但这些发现表明RPE中脂褐素的光氧化作用。

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