The release of carbohydrate moieties from human fibrinogen by almond glycopeptidase without alteration in fibrinogen clottability

Hina Nishibe , Noriko Takahashi
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引用次数: 41

Abstract

The possible noninvolvement of the carbohydrate moiety of human fibrinogen in the clotting mechanism was examined by eliminating the neutral sugar chains from desialylated fibrinogen by almond glycopeptidase digestion. 40% of the total neutral sugars was removed from the desialylated fibrinogen. The neutral sugars from both the β- and γ-polypeptide chains were released equally. The protein moiety of the glycopeptidase-digested fibrinogen was found to be intact. No significant change was observed in the thrombin time (fibrinogen clottability) of the resultant fibrinogen. The results suggest that the carbohydrate moiety of fibrinogen is not involved in the clotting mechanism. Oligosaccharide was detected in the glycopeptidase digest of desialylated fibrinogen by thin-layer chromatography (TLC), and was found to be identical with those released quantitatively from the peptic digests of β- and γ-polypeptide chains. The structure of the sugar chain was identified tentatively as Gal2-GlcNAc2-Man3-GlcNAc2, by sequential exoglycosidase digestion and quantitative analysis of carbohydrate components.

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杏仁糖肽酶释放人纤维蛋白原中的碳水化合物部分而不改变纤维蛋白原的可凝性
通过杏仁糖肽酶消化去除脱羧纤维蛋白原中的中性糖链,研究了人纤维蛋白原的碳水化合物部分可能不参与凝血机制。总中性糖的40%从脱木糖纤维蛋白原中去除。β-和γ-多肽链的中性糖被同样释放。糖肽酶消化的纤维蛋白原的蛋白质部分被发现是完整的。合成纤维蛋白原的凝血酶时间(纤维蛋白原可凝性)未见明显变化。结果表明,纤维蛋白原的碳水化合物部分不参与凝血机制。采用薄层色谱法在糖肽酶酶解纤维蛋白原中检测到低聚糖,发现低聚糖与β-和γ-多肽链的消化酶释放的低聚糖相同。通过序列外糖苷酶切和碳水化合物组分的定量分析,初步确定糖链结构为Gal2-GlcNAc2-Man3-GlcNAc2。
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