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对来自非洲大蜗牛的一种独特的唾液酸结合凝集素的化学修饰研究。色氨酸和组氨酸残基在生物活性中的作用。

Chemical-modification studies of a unique sialic acid-binding lectin from the snail Achatina fulica. Involvement of tryptophan and histidine residues in biological activity.

作者信息

Basu S, Mandal C, Allen A K

机构信息

Indian Institute of Chemical Biology, Calcutta.

出版信息

Biochem J. 1988 Aug 15;254(1):195-202. doi: 10.1042/bj2540195.

Abstract

A unique sialic acid-binding lectin, achatininH (ATNH) was purified in single step from the haemolymph of the snail Achatina fulica by affinity chromatography on sheep submaxillary-gland mucin coupled to Sepharose 4B. The homogeneity was checked by alkaline gel electrophoresis, immunodiffusion and immunoelectrophoresis. Amino acid analysis showed that the lectin has a fairly high content of acidic amino acid residues (22% of the total). About 1.3% of the residues are half-cystine. The glycoprotein contains 21% carbohydrate. The unusually high content of xylose (6%) and fucose (2.7%) in this snail lectin is quite interesting. The protein was subjected to various chemical modifications in order to detect the amino acid residues and carbohydrate residues present in its binding sites. Modification of tyrosine and arginine residues did not affect the binding activity of ATNH; however, modification of tryptophan and histidine residues led to a complete loss of its biological activity. A marked decrease in the fluorescence emission was found as the tryptophan residues of ATNH were modified. The c.d. data showed the presence of an identical type of conformation in the native and modified agglutinin. The modification of lysine and carboxy residues partially diminished the biological activity. The activity was completely lost after a beta-elimination reaction, indicating that the sugars are O-glycosidically linked to the glycoprotein's protein moiety. This result confirms that the carbohydrate moiety also plays an important role in the agglutination property of this lectin.

摘要

一种独特的唾液酸结合凝集素,即玛瑙螺凝集素H(ATNH),通过在偶联到琼脂糖4B上的绵羊下颌下腺粘蛋白上进行亲和层析,从福寿螺的血淋巴中一步纯化得到。通过碱性凝胶电泳、免疫扩散和免疫电泳检查其纯度。氨基酸分析表明,该凝集素酸性氨基酸残基含量相当高(占总量的22%)。约1.3%的残基是半胱氨酸。该糖蛋白含有21%的碳水化合物。这种蜗牛凝集素中木糖(6%)和岩藻糖(2.7%)含量异常高,颇为有趣。对该蛋白质进行了各种化学修饰,以检测其结合位点中存在的氨基酸残基和碳水化合物残基。酪氨酸和精氨酸残基的修饰不影响ATNH的结合活性;然而,色氨酸和组氨酸残基的修饰导致其生物活性完全丧失。随着ATNH色氨酸残基的修饰,发现荧光发射显著降低。圆二色性数据表明天然凝集素和修饰后的凝集素存在相同类型的构象。赖氨酸和羧基残基的修饰部分降低了生物活性。β-消除反应后活性完全丧失,表明糖类以O-糖苷键连接到糖蛋白的蛋白质部分。这一结果证实碳水化合物部分在该凝集素的凝集特性中也起着重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f853/1135056/585c38983d7f/biochemj00225-0202-a.jpg

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