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二十二碳六烯酸在光感受器中的摄取与代谢:通过高效的视网膜色素上皮细胞介导的循环过程实现视网膜保护

Docosahexaenoic acid uptake and metabolism in photoreceptors: retinal conservation by an efficient retinal pigment epithelial cell-mediated recycling process.

作者信息

Bazan N G, Gordon W C, Rodriguez de Turco E B

机构信息

LSU Eye Center and Neuroscience Center, Medical Center School of Medicine, New Orleans 70112.

出版信息

Adv Exp Med Biol. 1992;318:295-306. doi: 10.1007/978-1-4615-3426-6_26.

Abstract

After 18:3 omega 3 is obtained from the diet, it is accumulated by the liver, where it is esterified and temporarily stored as triacylglycerols. As it is required, 18:3 omega 3 is elongated and desaturated to 22:6 omega 3, then released into the circulation with lipoprotein carriers. RPE cells remove the 22:6 omega 3 from the choriocapillaris and subsequently release it to the retina proper. In the frog, all 22:6 omega 3 input to the photoreceptors occurs by way of the RPE cells. After passing through the interphotoreceptor matrix, it is selectively taken into the myoid region of photoreceptor cells where it is immediately activated and esterified onto position 2 (and sometimes also position 1) of a glycerol molecule. Some phospholipids are passed through the endoplasmic reticulum and Golgi apparatus, while others are not. Generally, transport to the outer segments seems to be independent of the Golgi apparatus. Addition to rod outer segments occurs in two ways: i) a general diffuse pathway, probably common to all fatty acids, which rapidly labels the entire outer segment; and ii) a specific dense pathway, utilized only by 22:6 omega 3-containing phospholipids, which become locked into the matrix of disc membranes along with opsin. There appears to be no exchange between these two forms of label. Accumulation of newly synthesized basal discs pushes older, 22:6 omega 3-laden discs apically until the outer segment tips, high in 22:6 omega 3-phospholipids (the dense form of outer segment label), are shed into the RPE cytoplasm. There, as the 22:6 omega 3 fatty acids are released from the disc membranes during degradation, a recycling mechanism immediately directs these essential fatty acids back into the interphotoreceptor matrix, thus conserving this molecule in the retina, and permitting it to be again selectively taken up by the photoreceptors for photomembrane synthesis. The process of 22:6 omega 3 handling and trafficking by the retina is specifically orchestrated around a conservation mechanism that is regulated by the RPE cells and that ensures, through a short feedback loop from the phagosomes to the interphotoreceptor matrix, adequate levels of 22:6 omega 3 for photoreceptors at all times.

摘要

18:3 ω-3从饮食中获取后,会在肝脏中积累,在肝脏中它被酯化并作为三酰甘油暂时储存。当需要时,18:3 ω-3会被延长并去饱和为22:6 ω-3,然后与脂蛋白载体一起释放到循环系统中。视网膜色素上皮(RPE)细胞从脉络膜毛细血管中摄取22:6 ω-3,随后将其释放到视网膜本身。在青蛙中,所有进入光感受器的22:6 ω-3都是通过RPE细胞进行的。穿过光感受器间基质后,它被选择性地摄取到光感受器细胞的肌样区域,在那里它立即被激活并酯化到甘油分子的第2位(有时也在第1位)。一些磷脂会穿过内质网和高尔基体,而其他的则不会。一般来说,向视杆细胞外段的运输似乎与高尔基体无关。视杆细胞外段的添加有两种方式:i)一种普遍的扩散途径,可能是所有脂肪酸共有的,它能迅速标记整个外段;ii)一种特定的密集途径,仅被含22:6 ω-3的磷脂利用,这些磷脂会与视蛋白一起锁定在盘膜基质中。这两种标记形式之间似乎没有交换。新合成的基底盘的积累将较旧的、富含22:6 ω-3的盘向顶端推移,直到外段顶端,此处富含22:6 ω-3磷脂(外段标记的密集形式),然后脱落到RPE细胞质中。在那里,随着22:6 ω-3脂肪酸在降解过程中从盘膜中释放出来,一种循环机制会立即将这些必需脂肪酸引导回光感受器间基质,从而在视网膜中保存这种分子,并使其能够再次被光感受器选择性摄取用于光膜合成。视网膜对22:6 ω-3的处理和运输过程是围绕一种保存机制精心编排的,该机制由RPE细胞调节,并通过从吞噬体到光感受器间基质的短反馈回路,确保光感受器始终有足够水平的22:6 ω-3。

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