Baglia F A, Sinha D, Walsh P N
Department of Medicine, Department of Biochemistry, Temple University School of Medicine, Philadelphia, PA 19140.
Blood. 1989 Jul;74(1):244-51.
To probe the molecular interactions of factor XI we have prepared two monoclonal antibodies (MoAbs; 5F7 and 3C1), each of which binds the heavy chain of reduced and alkylated factor XIa. Competitive solid phase radioimmunoassay (RIA) binding studies revealed that 5F7 and 3C1 are directed against different epitopes within factor XI. One antibody (5F7) blocked the surface-mediated proteolytic activation of factor XI and its binding to HMW kininogen, but had no effect on factor-XIa-catalyzed factor IX activation. The other antibody (3C1) is a competitive inhibitor of factor-IX activation by factor XIa, but blocked factor-XI binding to HMW kininogen only at 1,000-fold higher concentration than 5F7. Moreover, HMW kininogen had no effect on the kinetics of factor-XIa-catalyzed factor-IX activation. Furthermore, factor XI CNBr peptide fragments that bind to the 5F7 and 3C1 antibodies were isolated. The peptides that bound to the 5F7 antibody blocked the binding of HMW kininogen to factor XI but did not inhibit factor-XIa-catalyzed factor-IX activation. However, the peptides isolated by the 3C1 antibody inhibited factor-XIa-catalyzed factor-IX activation and had no effect on factor-XI binding to HMW kininogen. Our results indicate that distinct functional domains within the heavy chain region of factor XI are important for the binding of factor XI to HMW kininogen and for activation of factor IX by factor XIa.
为了探究因子XI的分子相互作用,我们制备了两种单克隆抗体(MoAbs;5F7和3C1),每种抗体都能结合还原和烷基化的因子XIa的重链。竞争性固相放射免疫分析(RIA)结合研究表明,5F7和3C1针对因子XI内不同的表位。一种抗体(5F7)阻断因子XI的表面介导的蛋白水解激活及其与高分子量激肽原的结合,但对因子XIa催化的因子IX激活没有影响。另一种抗体(3C1)是因子XIa激活因子IX的竞争性抑制剂,但仅在比5F7高1000倍的浓度下阻断因子XI与高分子量激肽原的结合。此外,高分子量激肽原对因子XIa催化的因子IX激活的动力学没有影响。此外,分离出了与5F7和3C1抗体结合的因子XI CNBr肽片段。与5F7抗体结合的肽阻断了高分子量激肽原与因子XI的结合,但不抑制因子XIa催化的因子IX激活。然而,由3C1抗体分离出的肽抑制因子XIa催化的因子IX激活,并且对因子XI与高分子量激肽原的结合没有影响。我们的结果表明,因子XI重链区域内不同的功能结构域对于因子XI与高分子量激肽原的结合以及因子XIa激活因子IX很重要。