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蛋白质-聚电解质相互作用。伴刀豆球蛋白A与聚电解质和多糖衍生物的沉淀反应。

Protein-polyelectrolyte interactions. The concanavalin A precipitin reaction with polyelectrolytes and polysaccharide derivatives.

作者信息

Doyle R J, Woodside E E, Fishel C W

出版信息

Biochem J. 1968 Jan;106(1):35-40. doi: 10.1042/bj1060035.

Abstract
  1. Concanavalin A formed precipitates with polyelectrolytes such as fucoidan, RNA, heparin and bacterial lipopolysaccharides. 2. Precipitate formation also occurred between ficoll and concanavalin A. 3. Precipitate formation between concanavalin A and dextran or soluble starch was induced by the incorporation of phosphate groups into the unreactive glucans. 4. Introduction of polar groups, such as acetate, formate and phosphate, into glycogen resulted in enhanced precipitation with concanavalin A, whereas the opposite effect was noted on incorporation of hydrophobic (methyl) centres. 5. Neutral sugars and salt partially inhibited complex-formation between polyelectrolytes and concanavalin A. 6. Concanavalin A-glycogen complexes could be dissociated with 5% (w/v) trichloroacetic acid or 44% phenol-water. 7. Concanavalin A lost its glycogen-complexing ability after phenol treatment. 8. Evidence is presented for the existence of common binding sites on concanavalin A for both neutral polysaccharides and polyelectrolytes. 9. Hydrogen bonding appeared to play a major role in neutral polysaccharide-concanavalin A precipitate formation, whereas both hydrogen bonding and electrostatic forces were implicated in polyelectrolyte-concanavalin A complex-formation.
摘要
  1. 伴刀豆球蛋白A与诸如岩藻依聚糖、RNA、肝素和细菌脂多糖等聚电解质形成沉淀。2. 聚蔗糖和伴刀豆球蛋白A之间也会形成沉淀。3. 通过将磷酸基团引入无反应性的葡聚糖中,可诱导伴刀豆球蛋白A与右旋糖酐或可溶性淀粉之间形成沉淀。4. 向糖原中引入极性基团,如乙酸根、甲酸根和磷酸根,会增强与伴刀豆球蛋白A的沉淀作用,而引入疏水(甲基)中心则会产生相反的效果。5. 中性糖和盐会部分抑制聚电解质与伴刀豆球蛋白A之间的复合物形成。6. 伴刀豆球蛋白A - 糖原复合物可用5%(w/v)三氯乙酸或44%苯酚 - 水解离。7. 苯酚处理后,伴刀豆球蛋白A失去其与糖原结合的能力。8. 有证据表明伴刀豆球蛋白A上存在对中性多糖和聚电解质的共同结合位点。9. 氢键似乎在中性多糖 - 伴刀豆球蛋白A沉淀形成中起主要作用,而氢键和静电力都与聚电解质 - 伴刀豆球蛋白A复合物形成有关。

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