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The light chain of factor VIII comprises a binding site for low density lipoprotein receptor-related protein

机译:VIII因子的轻链包含低密度脂蛋白受体相关蛋白的结合位点

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摘要

In the present study, the interaction between the endocytic receptor low density lipoprotein receptor-related protein (LRP) and coagulation factor VIII (FVIII) was investigated. Using purified components, FVIII was found to bind to LRP in a reversible and dose-dependent manner (K(d) approximately 60 nM). The interaction appeared to be specific because the LRP antagonist receptor-associated protein readily inhibited binding of FVIII to LRP (IC(50) approximately 1 nM). In addition, a 12-fold molar excess of the physiological carrier of FVIII, i.e. von Willebrand factor (vWF), reduced the binding of FVIII to LRP by over 90%. Cellular degradation of (125)I-labeled FVIII by LRP-expressing cells ( approximately 8 fmol/10(5) cells after a 4.5-h incubation) was reduced by approximately 70% in the presence of receptor-associated protein. LRP-directed antibodies inhibited degradation to a similar extent, indicating that LRP indeed contributes to binding and transport of FVIII to the intracellular degradation pathway. Degradation of FVIII was completely inhibited by vWF. Because vWF binding by FVIII involves its light chain, LRP binding to this subunit was studied. In ligand blotting experiments, binding of FVIII light chain to LRP could be visualized. More detailed analysis revealed that FVIII light chain interacts with LRP with moderate affinity (k(on) approximately 5 x 10(4) M(-1) s(-1); k(off) approximately 2.5 x 10(-3) s(-1); K(d) approximately 50 nM). Furthermore, experiments using recombinant FVIII C2 domain showed that this domain contributes to the interaction with LRP. In contrast, no association of FVIII heavy chain to LRP could be detected under the same experimental conditions. Collectively, our data demonstrate that in vitro LRP is able to bind FVIII at the cell surface and to mediate its transport to the intracellular degradation pathway. FVIII-LRP interaction involves the FVIII light chain, and FVIII-vWF complex formation plays a regulatory role in LRP binding. Our findings may explain the beneficial effect of vWF on the in vivo survival of FVIII
机译:在本研究中,研究了内吞受体低密度脂蛋白受体相关蛋白(LRP)与凝血因子VIII(FVIII)之间的相互作用。使用纯化的成分,发现FVIII以可逆和剂量依赖的方式与LRP结合(K(d)约为60 nM)。相互作用似乎是特异性的,因为LRP拮抗剂受体相关蛋白很容易抑制FVIII与LRP的结合(IC(50)约为1 nM)。另外,FVIII的生理学载体即von Willebrand因子(vWF)的摩尔过量12倍使FVIII与LRP的结合减少了超过90%。在存在受体相关蛋白的情况下,表达LRP的细胞(经4.5 h孵育后约8 fmol / 10(5)细胞)对(125)I标记的FVIII的细胞降解作用降低了约70%。针对LRP的抗体在相似程度上抑制了降解,这表明LRP确实有助于FVIII结合并转运至细胞内降解途径。 vWF完全抑制了FVIII的降解。由于FVIII与vWF的结合涉及其轻链,因此研究了LRP与该亚基的结合。在配体印迹实验中,可以观察到FVIII轻链与LRP的结合。更详细的分析表明,FVIII轻链以中等亲和力与LRP相互作用(k(on)约5 x 10(4)M(-1)s(-1); k(off)约2.5 x 10(-3)s (-1); K(d)约为50 nM)。此外,使用重组FVIII C2结构域的实验表明,该结构域有助于与LRP相互作用。相反,在相同的实验条件下,未检测到FVIII重链与LRP的缔合。总体而言,我们的数据表明,体外LRP能够在细胞表面结合FVIII,并介导其向细胞内降解途径的转运。 FVIII-LRP相互作用涉及FVIII轻链,并且FVIII-vWF复合物的形成在LRP结合中起调节作用。我们的发现可能解释了vWF对FVIII体内存活的有益作用

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