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血小板与胶原蛋白的黏附。影响Mg2(+)-依赖性和二价阳离子非依赖性黏附的因素。

Platelet adhesion to collagen. Factors affecting Mg2(+)-dependent and bivalent-cation-independent adhesion.

作者信息

Zijenah L S, Morton L F, Barnes M J

机构信息

Strangeways Research Laboratory, Worts Causeway, Cambridge, U.K.

出版信息

Biochem J. 1990 Jun 1;268(2):481-6. doi: 10.1042/bj2680481.

Abstract

Platelet adhesion to collagens immobilized on plastic has been measured, with the following results. (1) Human, but not rabbit, platelets adhered readily to pepsin-extracted monomeric collagens in an Mg2(+)-dependent manner. (2) Rabbit platelets adhered to a monomeric collagen extracted without pepsin by a process that was cation-independent; human platelet adhesion to this collagen exhibited a cation-independent element. (3) Human platelet adhesion to polymeric collagens, including intact native fibres and those reconstituted from pepsin-extracted monomeric collagens, exhibited appreciable cation-independence; adhesion of rabbit platelets to these collagens occurred only by a cation-independent process; pepsin treatment of the intact fibres caused a reduction in cation-independent binding. Two mechanisms of adhesion can therefore be distinguished, one Mg2(+)-dependent, expressed by human, but not rabbit, platelets, the other cation-independent and exhibited by platelets of both species. Mg2(+)-dependent and cation-independent adhesion sites are located within the triple helix of collagen, but the latter sites are only expressed in collagen in polymeric form. In neither case is the helical conformation of the sites essential for their binding activity. Cation-independent adhesion sites are also located in the pepsin-sensitive non-helical telopeptides of collagen and can be expressed in both monomeric and polymeric collagens. Chemical modification of collagen lysine residues indicates that specific lysine residues may be involved in Mg2(+)-dependent adhesion. Adhesion using human citrated platelet-rich plasma is Mg2(+)-independent. Plasma contains factors, conceivably the adhesive proteins fibronectin and von Willebrand factor, that promote the Mg2(+)-independent mechanism.

摘要

已测定血小板在固定于塑料上的胶原蛋白上的黏附情况,结果如下:(1) 人血小板而非兔血小板能以依赖Mg2+的方式轻易黏附于经胃蛋白酶提取的单体胶原蛋白。(2) 兔血小板通过一种不依赖阳离子的过程黏附于未经胃蛋白酶提取的单体胶原蛋白;人血小板对这种胶原蛋白的黏附表现出不依赖阳离子的成分。(3) 人血小板对包括完整天然纤维和由经胃蛋白酶提取的单体胶原蛋白重构而成的聚合胶原蛋白的黏附表现出明显的不依赖阳离子性;兔血小板对这些胶原蛋白的黏附仅通过不依赖阳离子的过程发生;对完整纤维进行胃蛋白酶处理会导致不依赖阳离子的结合减少。因此,可以区分出两种黏附机制,一种是依赖Mg2+的,由人血小板而非兔血小板表现出来,另一种是不依赖阳离子的,两种物种的血小板都有表现。依赖Mg2+和不依赖阳离子的黏附位点位于胶原蛋白的三螺旋内,但后者位点仅在聚合形式的胶原蛋白中表达。在这两种情况下,位点的螺旋构象对其结合活性都不是必需的。不依赖阳离子的黏附位点也位于胶原蛋白对胃蛋白酶敏感的非螺旋端肽中,并且在单体和聚合胶原蛋白中都可表达。胶原蛋白赖氨酸残基的化学修饰表明特定的赖氨酸残基可能参与依赖Mg2+的黏附。使用人枸橼酸化富血小板血浆进行的黏附不依赖Mg2+。血浆中含有一些因子,可以想象是黏附蛋白纤连蛋白和血管性血友病因子,它们促进不依赖Mg2+的机制。

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