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蛇瓜(Trichosanthes anguina)韧皮部泌物中一种新的几丁寡糖特异性凝集素。纯化、理化性质及糖结合热力学特性。

A new chitooligosaccharide specific lectin from snake gourd (Trichosanthes anguina) phloem exudate. Purification, physico-chemical characterization and thermodynamics of saccharide binding.

机构信息

School of Chemistry, University of Hyderabad, Central University P.O., Gachi Bowli, Hyderabad, Andhra Pradesh 500046, India.

出版信息

Biochimie. 2011 Oct;93(10):1676-84. doi: 10.1016/j.biochi.2011.05.032. Epub 2011 Jun 7.

DOI:10.1016/j.biochi.2011.05.032
PMID:21672602
Abstract

A new lectin has been purified to homogeneity from the phloem exudate of snake gourd (Trichosanthes anguina) by affinity chromatography on chitin. The snake gourd phloem lectin (SGPL) specifically binds chitooligosaccharides and their inhibitory potency increased with increase in size. PAGE and SDS-PAGE studies indicate that SGPL is a heterodimer, in which the two subunits (48 and 53kDa) are joined by disulfide bonds. Consistent with this, electrospray-ionization mass spectrum yielded the exact mass of the protein as 104,621.8 Daltons. CD studies showed that SGPL contains about 9% α-helix, 39% β-sheet, 20% β-turns and 32% unordered structures and that saccharide binding does not significantly affect its secondary and tertiary structures. Titration calorimetric studies indicate that the dimeric lectin binds two ligand molecules [(GlcNAc)(3-6)] with association constants determined at 25°C being 1.7×10(5) and 3.6×10(5)M(-1), for chitotriose and chitohexaose, respectively. Binding of all the chitooligosaccharides is governed by enthalpic forces, whereas the contribution from binding entropies was unfavorable. These results suggest that the SGPL-saccharide interaction is stabilized by hydrogen bonding and van der Waals' interactions. Enthalpy-entropy compensation was observed for the SGPL-chitooligosaccharide interaction, suggesting that water molecules play a key role in the binding process.

摘要

一种新的凝集素已通过亲和层析从蛇瓜(Trichosanthes anguina)韧皮部渗出液中纯化为均相。蛇瓜韧皮部凝集素(SGPL)特异性结合壳寡糖,其抑制能力随分子量的增加而增加。PAGE 和 SDS-PAGE 研究表明,SGPL 是一种杂二聚体,其中两个亚基(48 和 53kDa)通过二硫键连接。与此一致,电喷雾电离质谱法得到蛋白质的精确质量为 104621.8 道尔顿。CD 研究表明,SGPL 含有约 9%的α-螺旋、39%的β-折叠、20%的β-转角和 32%的无规卷曲结构,糖结合不会显著影响其二级和三级结构。滴定量热法研究表明,二聚体凝集素结合两个配体分子[(GlcNAc)(3-6)],在 25°C 下确定的结合常数分别为 1.7×10(5)和 3.6×10(5)M(-1),用于壳三糖和壳六糖。所有壳寡糖的结合均受焓变控制,而结合熵的贡献是不利的。这些结果表明,SGPL-糖相互作用是通过氢键和范德华相互作用稳定的。观察到 SGPL-壳寡糖相互作用的焓熵补偿,表明水分子在结合过程中起关键作用。

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