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大鼠视网膜和视杆细胞外段中亚麻酸和二十二碳六烯酸的代谢

Metabolism of linolenic acid and docosahexaenoic acid in rat retinas and rod outer segments.

作者信息

Wetzel M G, Li J, Alvarez R A, Anderson R E, O'Brien P J

机构信息

Laboratory of Retinal Cell and Molecular Biology, National Eye Institute, Bethesda, MD 20892.

出版信息

Exp Eye Res. 1991 Oct;53(4):437-46. doi: 10.1016/0014-4835(91)90161-7.

Abstract

Docosahexaenoic acid (22:6 omega 3) is uniquely enriched in photoreceptor outer segment phospholipids, comprising up to one-half of the fatty acids of phosphatidylethanolamine and phosphatidylserine. The current study was designed to investigate the incorporation of 22:6 omega 3 into outer segment phospholipids over 12 days and to determine whether the retina contained the enzymes necessary for elongation and desaturation of the major dietary precursor of 22:6 omega 3, the essential fatty acid linolenic acid (18:3 omega 3). Sprague-Dawley rats were injected intravitreally with [14C]22:6 omega 3 or [14C]18:3 omega 3 and kept in cyclic light (12 hr light/12 hr dark) for 2 hr to 12 days. Phospholipids from rod outer segments and the remaining retinal debris were separated by two-dimensional thin-layer chromatography. [14C]22:6 omega 3 radioactivity was initially highest in phosphatidylcholine and rapidly decreased from 45% of total phospholipid labeling at 2 hr to 26% by 1 and 3 days in ROS, while phosphatidylethanolamine labeling increased from 49 to 68% by 3 days and phosphatidylserine labeling increased from 3 to 14% over 12 days. Phenacyl derivatives of total fatty acids were separated by HPLC. A substantial conversion of [14C]18:3 to [14C]20:5, [14C]22:5 and [14C]22:6 was noted after 1 days, with increasing conversion to [14C]22:6 over the 12-day period. When only one eye was injected with [14C]18:3 omega 3, negligible radioactive fatty acids were detected in the contralateral eye from 1 to 12 days post-injection demonstrating that conversion of 18:3 to 22:6 occurred primarily within the injected eye. All enzymes for elongation and desaturation of 18:3 to 22:6 appear to be present in the eye. However, the conversion of 22:5 to 22:6 by delta-4 desaturase is evidently rate-limiting and may affect phospholipid replacement during photoreceptor outer segment renewal if this pathway proves to be essential for the supply of 22:6 during disk membrane formation.

摘要

二十二碳六烯酸(22:6 ω-3)在光感受器外段磷脂中含量独特丰富,占磷脂酰乙醇胺和磷脂酰丝氨酸脂肪酸的一半。本研究旨在调查12天内22:6 ω-3掺入外段磷脂的情况,并确定视网膜是否含有将22:6 ω-3的主要膳食前体、必需脂肪酸亚麻酸(18:3 ω-3)延长和去饱和所需的酶。将[14C]22:6 ω-3或[14C]18:3 ω-3玻璃体内注射到Sprague-Dawley大鼠体内,并使其处于循环光照(12小时光照/12小时黑暗)下2小时至12天。通过二维薄层色谱法分离视杆外段和其余视网膜碎片中的磷脂。[14C]22:6 ω-3放射性最初在磷脂酰胆碱中最高,并在2小时内从总磷脂标记的45%迅速下降到视杆外段1天和3天时的26%,而磷脂酰乙醇胺标记在3天时从49%增加到68%,磷脂酰丝氨酸标记在12天内从3%增加到14%。通过高效液相色谱法分离总脂肪酸的苯甲酰衍生物。1天后观察到[14C]18:3大量转化为[14C]20:5、[14C]22:5和[14C]22:6,在12天内转化为[14C]22:6的量增加。当仅一只眼睛注射[14C]18:3 ω-3时,在注射后1至12天,对侧眼睛中检测到的放射性脂肪酸可忽略不计,这表明18:3向22:6的转化主要发生在注射的眼睛内。眼睛中似乎存在将18:3延长和去饱和为22:6的所有酶。然而,如果该途径被证明对盘膜形成过程中22:6的供应至关重要,那么δ-4去饱和酶将22:5转化为22:6的过程显然是限速的,可能会影响光感受器外段更新过程中的磷脂替代。

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