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二十二碳六烯酸的可溶性结合蛋白存在于神经视网膜中。

Soluble-binding proteins for docosahexaenoic acid are present in neural retina.

作者信息

Lee J, Jiao X, Gentleman S, Wetzel M G, O'Brien P, Chader G J

机构信息

Laboratory of Retinal Cell and Molecular Biology, National Eye Institute/National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Invest Ophthalmol Vis Sci. 1995 Sep;36(10):2032-9.

PMID:7657541
Abstract

PURPOSE

To determine if soluble binding proteins (BP) for fatty acids (FA), particularly docosahexaenoic acid (DHA), could be identified in the cytosol of rat and bovine retinas under in vitro and in vivo conditions.

METHODS

In vitro, cytosol fractions from normal bovine and rat retinas were delipidated and incubated with [14C]-DHA with or without a number of competing fatty acids. After crosslinking bound FA to BP, the proteins were separated by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and radioactivity determined in each fraction. For in vivo experiments, rats received [14C]-DHA by gavage. At selected periods after ingestion, retinas were collected and cytosolic fractions were prepared from each. These were crosslinked and subjected to SDS-PAGE, and radioactivity was determined in each fraction.

RESULTS

In vitro, several peaks of radioactivity (approximately 13, 20, 32, 43-45, 50, 63, and 94-105 kd) were found that exhibited [14C]-DHA binding. Relative specificity of binding was assessed by blocking of the [14C]-DHA binding with unlabeled DHA and by competition experiments with other FAs. After in vivo ingestion of [14C]-DHA, a large peak of radioactivity was observed at 43 kd by 4 hours. At 6 hours, this peak decreased and, after 24 hours, it approached baseline.

CONCLUSIONS

These findings demonstrate that there is a discrete grouping of proteins in retinal cytosol capable of binding DHA and other FA. Although the identities of these proteins have yet to be determined, the group may include a member of the 12- to 15-kd group of small fatty acid binding proteins (FABP). In particular, a unique 43-kd binding peak could play a major role in the uptake, binding, or both of DHA by the retina in vivo.

摘要

目的

确定在体外和体内条件下,是否能在大鼠和牛视网膜的细胞质中鉴定出脂肪酸(FA),特别是二十二碳六烯酸(DHA)的可溶性结合蛋白(BP)。

方法

在体外,将正常牛和大鼠视网膜的细胞质组分进行脱脂处理,并与[14C]-DHA一起孵育,同时加入或不加入多种竞争性脂肪酸。在将结合的FA与BP交联后,通过十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)分离蛋白质,并测定每个组分中的放射性。对于体内实验,大鼠通过灌胃给予[14C]-DHA。在摄入后的选定时间段,收集视网膜并从每个视网膜制备细胞质组分。将这些进行交联并进行SDS-PAGE,然后测定每个组分中的放射性。

结果

在体外,发现几个放射性峰(约13、20、32、43 - 45、50、63和94 - 105 kd)表现出与[14C]-DHA结合。通过用未标记的DHA阻断[14C]-DHA结合以及与其他FA进行竞争实验来评估结合的相对特异性。在体内摄入[14C]-DHA后,4小时时在43 kd处观察到一个大的放射性峰。6小时时,这个峰下降,24小时后接近基线。

结论

这些发现表明,视网膜细胞质中存在一组离散的能够结合DHA和其他FA的蛋白质。尽管这些蛋白质的身份尚未确定,但该组可能包括12至15 kd的小脂肪酸结合蛋白(FABP)中的一个成员。特别是,一个独特的43 kd结合峰可能在体内视网膜对DHA的摄取、结合或两者中起主要作用。

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