首页> 外文期刊>Glycobiology. >Man alpha1-2 Man alpha-OMe-concanavalin A complex reveals a balance of forces involved in carbohydrate recognition.
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Man alpha1-2 Man alpha-OMe-concanavalin A complex reveals a balance of forces involved in carbohydrate recognition.

机译:男人alpha1-2男人alpha-OMe-伴刀豆球蛋白复合物揭示了参与碳水化合物识别的力的平衡。

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We have determined the crystal structure of the methyl glycoside of Man alpha1-2 Man in complex with the carbohydrate binding legume lectin concanavalin A (Con A). Man alpha1-2 Man alpha-OMe binds more tightly to concanavalin A than do its alpha1-3 and alpha1-6 linked counterparts. There has been much speculation as to why this is so, including a suggestion of the presence of multiple binding sites for the alpha1-2 linked disaccharide. Crystals of the Man alpha1-2 Man alpha-OMe-Con A complex form in the space group P2(1)2(1)2(1) with cell dimensions a = 119.7 A, b = 119.7 A, c = 68.9 A and diffract to 2. 75A. The final model has good geometry and an R factor of 19.6% (Rfree= 22.8%). One tetramer is present in the asymmetric unit. In three of the four subunits, electron density for the disaccharide is visible. In the fourth only a monosaccharide is seen. In one subunit the reducing terminal sugar is recognized by the monosaccharide site; the nonreducing terminal sugar occupies a new site and the major solution conformation of the inter-sugar glycosidic linkage conformation is adopted. In contrast, in another subunit the non reducing terminal sugar sits in the so called monosaccharide binding site; the reducing terminal sugar adopts a different conformation about its inter-sugar glycosidic linkage in order for the methyl group to access a hydrophobic pocket. In the third subunit, electron density for both binding modes is observed. We demonstrate that an extended carbohydrate binding site is capable of binding the disaccharide in two distinct ways. These results provide an insight in to the balance of forces controlling protein carbohydrate interactions.
机译:我们已经确定了与碳水化合物结合的豆类凝集素凝集素伴刀豆球蛋白A(Con A)复合的Man alpha1-2 Man甲基糖苷的晶体结构。 Man alpha1-2 Man alpha-OMe与伴刀豆球蛋白A的结合比与alpha1-3和alpha1-6连接的对应物更紧密。关于为什么如此,已经有很多猜测,包括关于α1-2连接的二糖存在多个结合位点的建议。 Man alpha1-2 Man alpha-OMe-Con的晶体空间群P2(1)2(1)2(1)中的复杂形式,晶胞尺寸为a = 119.7 A,b = 119.7 A,c = 68.9 A和衍射至2. 75A。最终模型具有良好的几何形状,R因子为19.6%(Rfree = 22.8%)。不对称单元中存在一个四聚体。在四个亚基中的三个中,可见二糖的电子密度。在第四个中,仅看到单糖。在一个亚基中,还原性末端糖被单糖位点识别。非还原性末端糖占据一个新位点,糖间糖苷键构象主要采用溶液构象。相反,在另一个亚基中,非还原性末端糖位于所谓的单糖结合位点;还原性末端糖关于其糖间糖苷键采用不同的构象,以使甲基进入疏水口袋。在第三亚基中,观察到两种结合模式的电子密度。我们证明了扩展的碳水化合物结合位点能够以两种不同的方式结合二糖。这些结果提供了对控制蛋白质碳水化合物相互作用的力平衡的见解。

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