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蛋白酶消化对光感受器凝集素结合位点的不同影响。

Differential effects of protease digestion on photoreceptor lectin binding sites.

作者信息

Wood J G, Napier-Marshall L

出版信息

J Histochem Cytochem. 1985 Jul;33(7):642-6. doi: 10.1177/33.7.3924992.

Abstract

The use of lectin cytochemistry together with proteolytic digestion techniques to partially characterize lectin binding sites of several intracellular compartments in frog photoreceptors was studied. Uniform access of reagents to all intracellular compartments was obtained by performing the experiments directly on semithin sections of retinal tissue embedded in a hydrophilic plastic resin. Protease pretreatment of sections of Xenopus laevis eyecup leads to a loss of wheat germ agglutinin (WGA) binding sites from most of the rod outer segment. Under experimental conditions used here, cone outer segment WGA binding sites are resistant to proteolytic digestion. Another major difference between rod and cone under segments is that rod outer segments are heavily labeled with succinylated WGA, whereas cone outer segments are barely labeled except for a region of intense staining thought to be at the connecting cilium. WGA binding sites in the shed outer segment tip (phagosome) are also relatively resistant to proteolytic digestion, as is the tip region of a few rod outer segments. This difference in lectin binding properties between the bulk of the outer segment membrane and the shed outer segment membrane is the only distinction we have observed between the two compartments in terms of their glycoconjugates. These results may be useful in terms of designing experiments to isolate cone and rod outer segments separately. They indicate that a change in outer segment glycoconjugates may accompany the shedding and phagocytosis events, as previously suggested, but this change does not necessarily involve the addition of saccharides to outer segment glycoproteins.

摘要

本研究采用凝集素细胞化学技术结合蛋白水解消化技术,对青蛙光感受器中几个细胞内区室的凝集素结合位点进行了部分表征。通过直接在嵌入亲水性塑料树脂的视网膜组织半薄切片上进行实验,使试剂能够均匀地进入所有细胞内区室。对非洲爪蟾眼杯切片进行蛋白酶预处理后,大部分视杆细胞外段的麦胚凝集素(WGA)结合位点消失。在本实验条件下,视锥细胞外段的WGA结合位点对蛋白水解消化具有抗性。视杆细胞和视锥细胞外段的另一个主要区别在于,视杆细胞外段被琥珀酰化WGA大量标记,而视锥细胞外段除了被认为是连接纤毛的强烈染色区域外,几乎没有被标记。脱落的外段顶端(吞噬体)的WGA结合位点也相对抗蛋白水解消化,少数视杆细胞外段的顶端区域也是如此。外段膜主体与脱落的外段膜之间凝集素结合特性的这种差异,是我们在这两个区室的糖缀合物方面观察到的唯一区别。这些结果可能有助于设计分别分离视锥细胞和视杆细胞外段的实验。结果表明,如先前所示,外段糖缀合物的变化可能伴随脱落和吞噬作用,但这种变化不一定涉及向外段糖蛋白添加糖类。

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