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Lectin-binding proteins in central-nervous-system myelin. Binding of glycoproteins in purified myelin to immobilized lectins

机译:中央神经系统髓磷脂中的凝集素结合蛋白。纯化的髓磷脂中糖蛋白与固定化凝集素的结合

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摘要

The capacities of immature and mature rat brain myelin, bovine myelin and human myelin to be agglutinated by soya-bean agglutinin, Ricinus communis agglutinin, wheatgerm agglutinin, and Lotus tetragonolobus agglutinin were examined. The first two lectins, which are specific for galactose and N-acetylgalactosamine, strongly agglutinated immature and mature rat myelin, weakly agglutinated bovine myelin, but did not affect human myelin. The other myelin and lectin combinations resulted in very weak or no agglutination. [3H]Fucose-labelled glycoproteins of purified adult rat brain myelin were solubilized with sodium dodecyl sulphate and allowed to bind to concanavalin A–Sepharose and each of the other lectins mentioned above, which had been immobilized on agarose. About 60% of the radioactive fucose was in glycoproteins that bound to concanavalin A–Sepharose and these glycoproteins could be eluted with solutions containing methyl α-d-mannoside and sodium dodecyl sulphate. Periodate/Schiff staining or radioactive counting of analytical gels showed that most of the major myelin-associated glycoprotein (apparent mol.wt. approx. 100000) bound to the concanavalin A, whereas the glycoproteins that did not bind were mostly of lower molecular weight. Preparative polyacrylamide-gel electrophoresis of the glycoprotein fraction that was eluted with methyl α-d-mannoside yielded a relatively pure preparation of the myelin-associated glycoprotein. Similar results were obtained with each of the other lectins, i.e. the myelin-associated glycoprotein was in the fraction that bound to the immobilized lectin. Double-labelling experiments utilizing [3H]fucose-labelled glycoproteins from adult myelin and [14C]fucose-labelled glycoproteins from 14-day-old rat brain myelin did not reveal any difference in the binding of the mature and immature glycoproteins to any of the immobilized lectins. The results in this and the preceding paper [McIntyre, Quarles & Brady (1979) Biochem. J. >183, 205–212] suggest that the myelin-associated glycoprotein is one of the principal receptors for concanavalin A and other lectins in myelin, and that this property can be utilized for the purification of this glycoprotein.
机译:检查未成熟和成熟的大鼠脑髓磷脂,牛髓磷脂和人髓磷脂被大豆凝集素,蓖麻(Ricinus communis)凝集素,小麦胚芽凝集素和莲花四棱菌凝集素凝集的能力。前两种凝集素对半乳糖和N-乙酰半乳糖胺具有特异性,它们强烈凝集未成熟和成熟的大鼠髓磷脂,弱凝集牛髓磷脂,但不影响人髓磷脂。其他髓磷脂和凝集素组合导致极弱的凝集或没有凝集。 [ 3 H]纯化的成年大鼠脑髓磷脂的岩藻糖标记糖蛋白用十二烷基硫酸钠溶解,并使其与伴刀豆球蛋白A-琼脂糖和上述提及的每种其他凝集素结合,将其固定在琼脂糖放射性岩藻糖中约60%是与伴刀豆球蛋白A-琼脂糖结合的糖蛋白,这些糖蛋白可用含有α-d-甘露糖苷甲基和十二烷基硫酸钠的溶液洗脱。高碘酸盐/席夫氏染色或分析凝胶的放射性计数表明,大多数与髓磷脂相关的主要糖蛋白(表观分子量约100000)与伴刀豆球蛋白A结合,而未结合的糖蛋白则分子量较低。用甲基α-d-甘露糖苷洗脱的糖蛋白馏分的制备性聚丙烯酰胺-凝胶电泳产生了髓鞘相关糖蛋白的相对纯的制剂。对于其他凝集素中的每一个,也获得了相似的结果,即髓磷脂相关糖蛋白处于与固定化凝集素结合的部分中。使用成年髓磷脂的[ 3 H]岩藻糖标记糖蛋白和14天龄大鼠脑髓磷脂的[ 14 C]岩藻糖标记糖蛋白的双标记实验没有揭示了成熟糖蛋白和未成熟糖蛋白与任何固定的凝集素结合的任何差异。在本论文和之前的论文中的结果[McIntyre,Quarles&Brady(1979)生物化学。 J. > 183 ,205–212]表明,髓磷脂相关糖蛋白是伴刀豆球蛋白伴刀豆球蛋白A和其他凝集素的主要受体之一,该特性可用于纯化该糖蛋白。

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