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豌豆(Pisum sativum)凝集素的碳水化合物结合特异性。

Carbohydrate binding specificity of the lectin from the pea (Pisum sativum).

作者信息

Van Wauwe J P, Loontiens F G, De Bruyne C K

出版信息

Biochim Biophys Acta. 1975 Feb 27;379(2):456-61. doi: 10.1016/0005-2795(75)90152-x.

Abstract

Hapten inhibition measurements on the precipitin reaction between Pisum sativum lectin and Pichia pinus phosphomannan showed the lectin to bind D-mannose, D-glucose, D-fructose and L-sorbose. Unmodified hydroxyl groups at the C-4 and the C-6 positions of the D-glucopyranose ring were essential for binding to the protein. Modification of the C-2 hydroxyl group was allowed in the D-glucopyranose ring but not in the D-mannopyranose configuration. Substitution of the hydroxyl hydrogen atom at the C-3 position of D-glucose increased the binding efficiency. With the exception of gentiobiose, the beta-linked glycobioses tested were not bound to the lectin, whereas the alpha-linked glycobioses were potent inhibitorsmin general, the P. sativum lectin was found to be less sensitive to structural variation of inhibiting carbohydrates than concanavalin A, the lectin from Canavalia ensiformis.

摘要

对半乳糖凝集素与毕赤酵母磷酸甘露聚糖之间沉淀反应进行的半抗原抑制测量表明,该凝集素可结合D-甘露糖、D-葡萄糖、D-果糖和L-山梨糖。D-吡喃葡萄糖环C-4和C-6位上未修饰的羟基对于与蛋白质的结合至关重要。D-吡喃葡萄糖环中C-2羟基的修饰是允许的,但在D-甘露吡喃糖构型中则不允许。D-葡萄糖C-3位上羟基氢原子的取代提高了结合效率。除龙胆二糖外,所测试的β-连接的双糖不与凝集素结合,而α-连接的双糖是有效的抑制剂。一般而言,发现豌豆凝集素对抑制性碳水化合物结构变化的敏感性低于刀豆球蛋白A(来自刀豆的凝集素)。

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