Rozenfel'd M A, Vasil'eva M V, Gershkovich K B
Izv Akad Nauk SSSR Biol. 1990 Mar-Apr(2):209-17.
The mechanism of fibrinogen aggregation in the presence of fragment D has been studied. The values of translational diffusion coefficients, specific viscosity, average molecular masses, and Zimm factor of light scattering indicate that fragment D accelerated assembly of fibrinogen molecules that form flexible polymeric chains with tail-to-tail association due to spontaneous structural modification of COOH-terminal regions. Electrophoresis did not reveal the presence of fragment D in polymer fraction of non-reduced samples. The data obtained allowed to conclude that at initial stages fragment D forms unstable complexes with structurally modified fibrinogen molecules. These complexes serve as intermediates in the multistep process of assembly of supermolecular protein complex.
已对片段D存在下纤维蛋白原聚集的机制进行了研究。平移扩散系数、比粘度、平均分子量和光散射的齐姆因子值表明,片段D加速了纤维蛋白原分子的组装,这些分子由于COOH末端区域的自发结构修饰而形成尾对尾缔合的柔性聚合物链。电泳未显示未还原样品的聚合物部分中存在片段D。所获得的数据可以得出结论,在初始阶段,片段D与结构修饰的纤维蛋白原分子形成不稳定的复合物。这些复合物在超分子蛋白质复合物组装的多步过程中充当中间体。