Fong S L, Liou G I, Landers R A, Alvarez R A, Gonzalez-Fernandez F, Glazebrook P A, Lam D M, Bridges C D
J Neurochem. 1984 Jun;42(6):1667-76. doi: 10.1111/j.1471-4159.1984.tb12758.x.
Human eyes contain an Mr 135K retinol-binding protein that is analogous to interstitial retinol-binding protein ( IRBP ) in the subretinal space of bovine eyes. It is a glycoprotein, because it binds 125I-concanavalin A, 125I-wheat germ agglutinin and 125I-Lens culinaris hemagglutinin. It does not bind Ricinus communis agglutinin I. After desialation, it binds Ricinus communis agglutinin I, but loses its capacity to bind wheat germ agglutinin. These observations, coupled with the known specificities of these lectins, suggest that at least one of the oligosaccharide chains is a sialated , biantennary complex type containing fucose. Both by direct analysis of dissected ocular tissues and by immunocytochemistry it was shown that human interstitial retinol binding protein is an extracellular protein that is confined predominantly to the subretinal space. Monkey retinas incubated in vitro in medium containing [3H]leucine were shown to synthesize and secrete this protein into the medium, a conclusion that was confirmed by immunoprecipitation with an immunoglobulin fraction prepared from rabbit antibovine IRBP serum. Virtually no other labeled proteins were detectable in the medium. It is concluded that interstitial retinol-binding protein meets many of the requirements for a putative transport protein implicated in the transfer of retinol between the pigment epithelium and retina during the visual cycle, and that the neural retina may play an important role in regulating its amount in the subretinal space.
人眼含有一种分子量为135K的视黄醇结合蛋白,它类似于牛眼视网膜下间隙中的间质视黄醇结合蛋白(IRBP)。它是一种糖蛋白,因为它能结合125I-伴刀豆球蛋白A、125I-麦胚凝集素和125I-小扁豆凝集素。它不结合蓖麻凝集素I。去唾液酸化后,它能结合蓖麻凝集素I,但失去了结合麦胚凝集素的能力。这些观察结果,加上这些凝集素已知的特异性,表明至少有一条寡糖链是含有岩藻糖的唾液酸化双天线复合型。通过对分离的眼组织的直接分析和免疫细胞化学方法都表明,人眼间质视黄醇结合蛋白是一种细胞外蛋白,主要局限于视网膜下间隙。在含有[3H]亮氨酸的培养基中体外培养的猴视网膜显示能合成并将这种蛋白分泌到培养基中,这一结论通过用从兔抗牛IRBP血清制备的免疫球蛋白组分进行免疫沉淀得到了证实。在培养基中几乎检测不到其他标记蛋白。结论是,间质视黄醇结合蛋白符合作为在视觉循环中参与视黄醇在色素上皮和视网膜之间转运的假定转运蛋白的许多要求,并且神经视网膜可能在调节视网膜下间隙中其含量方面起重要作用。