Pittman D D, Marquette K A, Kaufman R J
Genetics Institute, Cambridge, MA.
Blood. 1994 Dec 15;84(12):4214-25.
Factor V and factor VIII are homologous cofactors in the blood coagulation cascade that have the domain structure A1-A2-B-A3-C1-C2, of which the B domain has extensively diverged. In transfected COS-1 monkey cells, expression of factor VIII is approximately 10-fold less efficient than that of factor V, primarily because of inefficient protein secretion and, to a lesser extent, reduced mRNA expression. To study the functional significance and effect of the B domain on expression and activity, chimeric cDNAs were constructed in which the B domains of factor V and factor VIII were exchanged. Expression of a factor VIII chimera harboring the B-domain of factor V yielded a fully functional factor VIII molecule that was expressed twofold more efficiently than wild-type factor VIII because of increased mRNA expression. Thus, sequences within the factor VIII B domain were not responsible for the inefficient secretion of factor VIII compared with factor V. Expression of a factor V chimera harboring the B domain of factor VIII was slightly reduced compared with wild-type factor V, although the secreted molecule had significantly reduced procoagulant activity correlating with dissociated heavy and light chains and resistance to thrombin activation. Interestingly, the factor V chimera containing the factor VIII B domain was efficiently activated by Russell's viper venum (RVV). A factor V B domain deletion (residues 710-1545) molecule also exhibited significantly reduced procoagulant activity caused by resistance to thrombin cleavage and activation, although this molecule was activatable by RVV. These results show that, in contrast to factor VIII, thrombin activation of factor V requires sequences within the B domain. In addition, thrombin activation of factor V occurs through a different mechanism than activation by RVV.
凝血因子V和凝血因子VIII是血液凝固级联反应中的同源辅因子,具有A1-A2-B-A3-C1-C2结构域,其中B结构域差异很大。在转染的COS-1猴细胞中,凝血因子VIII的表达效率比凝血因子V低约10倍,主要原因是蛋白质分泌效率低下,在较小程度上是mRNA表达降低。为了研究B结构域对表达和活性的功能意义和影响,构建了嵌合cDNA,其中凝血因子V和凝血因子VIII的B结构域进行了交换。含有凝血因子V B结构域的凝血因子VIII嵌合体的表达产生了一个功能完全正常的凝血因子VIII分子,由于mRNA表达增加,其表达效率比野生型凝血因子VIII高两倍。因此,与凝血因子V相比,凝血因子VIII B结构域内的序列与凝血因子VIII分泌效率低下无关。含有凝血因子VIII B结构域的凝血因子V嵌合体的表达与野生型凝血因子V相比略有降低,尽管分泌的分子促凝活性显著降低,这与重链和轻链解离以及对凝血酶激活的抗性有关。有趣的是,含有凝血因子VIII B结构域的凝血因子V嵌合体可被罗素蝰蛇毒(RVV)有效激活。凝血因子V B结构域缺失(第710-1545位氨基酸残基)分子也表现出由于对凝血酶切割和激活的抗性而导致的促凝活性显著降低,尽管该分子可被RVV激活。这些结果表明,与凝血因子VIII不同,凝血因子V的凝血酶激活需要B结构域内的序列。此外,凝血因子V的凝血酶激活机制与RVV激活机制不同。