Sultan Nabil Ali Mohammed, Kenoth Roopa, Swamy Musti J
School of Chemistry, University of Hyderabad, Hyderabad 500 046, India.
Arch Biochem Biophys. 2004 Dec 15;432(2):212-21. doi: 10.1016/j.abb.2004.09.016.
A new galactose-specific lectin has been purified from the extracts of Trichosanthes dioica seeds by affinity chromatography on cross-linked guar gum. The purified lectin (T. dioica seed lectin, TDSL) moved as a single symmetrical peak on gel filtration on Superose-12 in the presence of 0.1 M lactose with an M(r) of 55 kDa. In the absence of ligand, the movement was retarded, indicating a possible interaction of the lectin with the column matrix. In SDS-PAGE, in the presence of beta-mercaptoethanol, two non-identical bands of M(r) 24 and 37 kDa were observed, whereas in the absence of beta-mercaptoethanol, the lectin yielded a single band corresponding to approximately 55,000 Da, indicating that the two subunits of TDSL are connected by one or more disulfide bridges. TDSL is a glycoprotein with about 4.9% covalently bound neutral sugar. Analysis of near-UV CD spectrum by three different methods (CDSSTR, CONTINLL, and SELCON3) shows that TDSL contains 13.3% alpha-helix, 36.7% beta-sheet, 19.4% beta-turns, and 31.6% unordered structure. Among a battery of sugars investigated, TDSL was inhibited strongly by beta-d-galactopyranosides, with 4-methylumbelliferyl-beta-d-galactopyranoside being the best ligand. Chemical modification studies indicate that tyrosine residues are important for the carbohydrate-binding and hemagglutinating activities of the lectin. A partial protection was observed when the tyrosine modification was performed in the presence of 0.2 M lactose. The tryptophan residues of TDSL appear to be buried in the protein interior as they could not be modified under native conditions, whereas upon denaturation with 8 M urea two Trp residues could be selectively modified by N-bromosuccinimide. The subunit composition and size, secondary structure, and sugar specificity of this lectin are similar to those of type-2 ribosome inactivating proteins, suggesting that TDSL may belong to this protein family.
通过交联瓜尔胶亲和层析从栝楼种子提取物中纯化出一种新的半乳糖特异性凝集素。纯化的凝集素(栝楼种子凝集素,TDSL)在含有0.1M乳糖的Superose-12凝胶过滤中呈现为单一对称峰,其相对分子质量(M(r))为55 kDa。在没有配体的情况下,迁移受阻,表明凝集素可能与柱基质相互作用。在SDS-PAGE中,在存在β-巯基乙醇的情况下,观察到两条不同的相对分子质量为24 kDa和37 kDa的条带,而在没有β-巯基乙醇的情况下,凝集素产生一条对应于约55,000 Da的单一条带,表明TDSL的两个亚基通过一个或多个二硫键连接。TDSL是一种糖蛋白,含有约4.9%的共价结合中性糖。通过三种不同方法(CDSSTR、CONTINLL和SELCON3)对近紫外圆二色光谱的分析表明,TDSL含有13.3%的α-螺旋、36.7%的β-折叠、19.4%的β-转角和31.6%的无规结构。在所研究的一系列糖类中,TDSL受到β-D-吡喃半乳糖苷的强烈抑制,其中4-甲基伞形酮基-β-D-吡喃半乳糖苷是最佳配体。化学修饰研究表明,酪氨酸残基对于凝集素的碳水化合物结合和血凝活性很重要。当在0.2M乳糖存在下进行酪氨酸修饰时,观察到部分保护作用。TDSL的色氨酸残基似乎埋藏在蛋白质内部,因为在天然条件下它们无法被修饰,而在用8M尿素变性后,两个色氨酸残基可以被N-溴代琥珀酰亚胺选择性修饰。这种凝集素的亚基组成和大小、二级结构以及糖特异性与2型核糖体失活蛋白相似,表明TDSL可能属于这个蛋白家族。