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人血管性血友病因子:一种由相同亚基组成的多价蛋白。

Human von Willebrand factor: a multivalent protein composed of identical subunits.

作者信息

Chopek M W, Girma J P, Fujikawa K, Davie E W, Titani K

出版信息

Biochemistry. 1986 Jun 3;25(11):3146-55. doi: 10.1021/bi00359a012.

Abstract

A large-scale method for the isolation of von Willebrand factor (vWF) from human factor VIII concentrates was developed in order to study the structure of this protein and its platelet binding activity. vWF is composed of a number of glycoprotein subunits that are linked together by disulfide bonds to form a series of multimers. These multimers appear to contain an even number of subunits of 270K. Two minor components of Mr 140K and 120K were also identified, but these chains appear to result from minor proteolysis. The smallest multimer of vWF contained nearly equimolar amounts of the 270K, 140K, and 120K subunits, while the largest multimers contained less than 20% of the two minor components. Amino acid sequence analysis, amino acid composition, and cleavage by cyanogen bromide indicate that the 270K subunits are identical and each is a single polypeptide chain with an amino-terminal sequence of Ser-Leu-Ser-Cys-Arg-Pro-Pro-Met-Val-Lys and a carboxyl-terminal sequence of Glu-Cys-Lys-Cys-Ser-Pro-Arg-Lys-Cys-Ser-Lys. Platelet binding in the presence of ristocetin was 8-fold greater with multimers larger than five (i.e., containing more than 10 subunits of 270K) as compared to multimers less than three (containing less than six subunits of 270K). However, partially reduced vWF (Mr 500K), regardless of whether it was prepared from large or small molecular weight multimers, gave platelet binding similar to that of the smallest multimers. Likewise, partial proteolysis by elastase, thermolysin, trypsin, or chymotrypsin produced small "multimer-like" proteins with platelet binding properties similar to either partially reduced vWF or to the smallest multimers. We conclude that human vWF contains identical 270K subunits assembled into a multivalent structure. Disassembly by either partial reduction or partial proteolysis produces essentially monovalent protein with platelet binding properties similar to that of the smallest multimers. Multivalency is likely the primary factor responsible for the increase in biological activity with multimer size.

摘要

为了研究血管性血友病因子(vWF)的结构及其与血小板的结合活性,开发了一种从人凝血因子VIII浓缩物中分离vWF的大规模方法。vWF由多个糖蛋白亚基组成,这些亚基通过二硫键连接在一起形成一系列多聚体。这些多聚体似乎含有偶数个270K的亚基。还鉴定出了140K和120K的两个次要成分,但这些链似乎是由轻微的蛋白水解产生的。vWF最小的多聚体含有几乎等摩尔量的270K、140K和120K亚基,而最大的多聚体含有不到20%的这两个次要成分。氨基酸序列分析、氨基酸组成和溴化氰裂解表明,270K亚基是相同的,每个都是一条单一的多肽链,其氨基末端序列为Ser-Leu-Ser-Cys-Arg-Pro-Pro-Met-Val-Lys,羧基末端序列为Glu-Cys-Lys-Cys-Ser-Pro-Arg-Lys-Cys-Ser-Lys。与小于三聚体(含有少于六个270K亚基)相比,在瑞斯托菌素存在下,大于五聚体(即含有超过10个270K亚基)的多聚体与血小板的结合力高8倍。然而,部分还原的vWF(500K),无论它是由大分子量还是小分子量的多聚体制备的,其与血小板的结合情况与最小的多聚体相似。同样,弹性蛋白酶、嗜热菌蛋白酶、胰蛋白酶或糜蛋白酶的部分蛋白水解产生了具有与部分还原的vWF或最小多聚体相似的血小板结合特性的小“多聚体样”蛋白。我们得出结论,人vWF含有组装成多价结构的相同的270K亚基。通过部分还原或部分蛋白水解进行的拆解产生了基本上单价的蛋白,其血小板结合特性与最小的多聚体相似。多价性可能是导致生物活性随多聚体大小增加的主要因素。

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