Morton L F, Peachey A R, Barnes M J
Strangeways Research Laboratory, Worts Causeway, Cambridge, U.K.
Biochem J. 1989 Feb 15;258(1):157-63. doi: 10.1042/bj2580157.
The adhesion of human and rabbit platelets to collagens and collagen-derived fragments immobilized on plastic was investigated. Adhesion appeared to be independent of collagen conformation, since similar attachment occurred to collagen (type I) in monomeric form, as fibres or in denatured state. The adhesion of human platelets was stimulated to a variable degree by Mg2+, but rabbit platelet adhesion showed little if any dependence on this cation. Collagens type I, III, V and VI were all able to support adhesion, although that to collagen type V (native) was lower than that to the other collagens. Adhesion to a series of peptides derived from collagens I and III was measured. Attachment did not require the presence of peptides in triple-helical configuration. The extent of adhesion ranged from relatively high, as good as to the intact parent collagen molecule, to little if any adhesive activity beyond the non-specific (background) level. The existence of very different degrees of activity suggests that platelet adhesion is associated with specific structural sites in the collagen molecule. Adhesion in many instances was essentially in accord with the known platelet-aggregatory activity of individual peptides. However, two peptides, alpha 1(I)CB3 and alpha 1(III)CB1,8,10,2, exhibited good adhesive activity although possessing little if any aggregatory activity. Of particular interest, despite its near-total lack of aggregatory activity, adhesion to peptide alpha 1(I)CB3 was as good as that to the structurally homologous peptide alpha 1(III)CB4, in which is located a highly reactive aggregatory site. This implies that platelet adhesion to collagen may involve sites in the collagen molecule distinct from those more directly associated with aggregation.
研究了人和兔血小板与固定在塑料上的胶原蛋白及胶原蛋白衍生片段的黏附情况。黏附似乎与胶原蛋白的构象无关,因为无论是单体形式、纤维形式还是变性状态的I型胶原蛋白,血小板都能与之发生类似的附着。Mg2+能不同程度地刺激人血小板的黏附,但兔血小板的黏附对该阳离子几乎没有依赖性。I型、III型、V型和VI型胶原蛋白都能支持血小板黏附,不过V型(天然)胶原蛋白的黏附力低于其他几种胶原蛋白。测定了血小板与一系列源自I型和III型胶原蛋白的肽段的黏附情况。血小板黏附并不需要三螺旋构象的肽段存在。黏附程度从相对较高(与完整的亲本胶原蛋白分子相当)到几乎没有超出非特异性(背景)水平的黏附活性不等。活性程度差异极大,这表明血小板黏附与胶原蛋白分子中的特定结构位点有关。在许多情况下,黏附情况与各肽段已知的血小板聚集活性基本一致。然而,有两个肽段,即α1(I)CB3和α1(III)CB1,8,10,2,虽然几乎没有聚集活性,但却表现出良好的黏附活性。特别值得注意的是,尽管肽段α1(I)CB3几乎完全没有聚集活性,但其黏附能力却与具有高活性聚集位点的结构同源肽段α1(III)CB4相当。这意味着血小板与胶原蛋白的黏附可能涉及胶原蛋白分子中与聚集更直接相关的位点不同的其他位点。