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首页> 外文期刊>FEBS Letters >Differential scanning calorimetric studies of the glycoprotein, winged bean acidic lectin, isolated from the seeds of Psophocarpus tetrogonolobus
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Differential scanning calorimetric studies of the glycoprotein, winged bean acidic lectin, isolated from the seeds of Psophocarpus tetrogonolobus

机译:分离自四香果种子的糖蛋白,四棱豆酸性凝集素的差示扫描量热研究

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摘要

>Differential scanning calorimetry of solutions of WBAII and in presence of sugar ligands shows that WBAII dimer dissociates to its constituent monomeric subunits at the denaturation temperature. The thermal denaturation of WBAII consists of the unfolding of two independent domains of WBAII similar to that of basic winged bean lectin and ECorL and in contrast to concanavalin A (conA), pea and lentil lectin, which unfold as single entities. Apparently, the glycosylation reduces the structural integrity of WBAII as compared to conA, pea and lentil lectin. The increase in the denaturation temperature of the sugar-lectin complexes yields binding constants close to the binding constants extrapolated from the ITC results and confirms the mechanism proposed for its thermal unfolding.
机译:在糖配体存在下,WBAII溶液的差示扫描量热法显示,WBAII二聚体在变性温度下解离为其组成的单体亚基。 WBAII的热变性包括WBAII的两个独立结构域的展开,与基本四棱豆凝集素和ECorL的相似,而与伴刀豆球蛋白A(conA),豌豆和小扁豆凝集素相反,它们以单个实体形式展开。显然,与conA,豌豆和小扁豆凝集素相比,糖基化降低了WBAII的结构完整性。糖-凝集素复合物变性温度的升高产生结合常数,该结合常数接近于从ITC结果推算出的结合常数,并证实了其热展开的机理。

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