Kuwahara Hiromiki, Yamasaki Takayuki, Hatakeyama Tomomitsu, Aoyagi Haruhiko, Fujisawa Tetsuro
Department of Applied Chemistry, Faculty of Engineering, Nagasaki University Bunkyo-machi Nagasaki 852-8521, Japan.
J Biochem. 2002 May;131(5):751-6. doi: 10.1093/oxfordjournals.jbchem.a003161.
CEL-III is a Ca(2+)-dependent lectin purified from a sea cucumber, Cucumaria echinata. This protein exhibits strong hemolytic activity as well as cytotoxicity toward some cultured cell lines. Hemolysis is caused by CEL-III oligomers formed in the cell membrane after binding to specific carbohydrate chains on the cell surface. We have found that the oligomerization of CEL-III is also induced by the binding of simple carbohydrates, such as lactose, in aqueous solution under high pH and high ionic strength conditions. From gel filtration analysis of the oligomerization of CEL-III, it was found that the formation of the CEL-III oligomer is effectively induced by the binding of lactose and lactulose, disaccharides containing a beta-galactoside structure. Electron micrographs of the resulting oligomers revealed them to exist as particles with a size of approximately 20-30 nm. The oligomerization process required more than 1 h, which is consistent with the increase in surface hydrophobicity as measured using a fluorescent probe, 8-anilinonaphthalene-1-sulfonate. However, a change in the far-UV CD spectra as well as small-angle X-ray scattering occurred within a few minutes, suggesting that a structural change in the protein takes place rapidly, but the following growth of the oligomer is a much slower process.
CEL-III是一种从刺参(Cucumaria echinata)中纯化得到的钙依赖性凝集素。这种蛋白质对一些培养细胞系表现出很强的溶血活性和细胞毒性。溶血是由CEL-III与细胞表面特定碳水化合物链结合后在细胞膜中形成的低聚物引起的。我们发现,在高pH和高离子强度条件下,水溶液中的乳糖等单糖结合也能诱导CEL-III的低聚。通过对CEL-III低聚的凝胶过滤分析发现,乳糖和乳果糖(含有β-半乳糖苷结构的二糖)的结合能有效诱导CEL-III低聚物的形成。所得低聚物的电子显微镜照片显示它们以大小约为20 - 30 nm的颗粒形式存在。低聚过程需要超过1小时,这与使用荧光探针8-苯胺基萘-1-磺酸盐测量的表面疏水性增加一致。然而,远紫外圆二色光谱以及小角X射线散射的变化在几分钟内就发生了,这表明蛋白质的结构变化迅速发生,但随后低聚物的生长是一个慢得多的过程。