O'Brien D P, Pattinson J K, Tuddenham E G
Haemostasis Research Group, Clinical Research Centre, Harrow, Middlesex, UK.
Blood. 1990 Apr 15;75(8):1664-72.
We have purified factor VIII from a patient with moderately severe hemophilia A (FVIII, 4 U/dL; FVIII:Ag, 110 U/dL) and subjected the protein to Western blot analysis after time course activation with thrombin. The cross reacting material-positive (CRM+) FVIII has the normal distribution of heavy and light chains before thrombin activation, and, after incubation with the enzyme, appropriate cleavages are made at positions 740 and 1689. However, the normal thrombin cleavage at position 372 in the heavy chain of this molecule does not occur. This result is consistent with the demonstration in the patient's leukocyte DNA of a C to T transition in codon 372, leading to the substitution of a cysteine for an arginine residue at the heavy chain internal cleavage site. The severely impaired functional activity of this molecule confirms that the heavy chain of FVIII must be proteolysed in order to effect full cofactor activation in vivo. However, a threefold activation was detected when this protein was incubated with thrombin. No evidence of thrombin-mediated cleavage at position 336 in the heavy chain was detected, in contrast to the variant recombinant B domainless-molecule, FVIII 372-Ile, described by Pittman and Kaufman (Proc Natl Acad Sci USA 85:2429, 1988). Using gel permeation studies of the FVIII/von Willebrand factor (vWF) complex before and after thrombin activation, we have demonstrated that the 40 Kd A2 domain of wild type FVIII dissociates from vWF after cleavage by the enzyme. In contrast, incomplete dissociation was detected in the case of FVIII 372-Cys. We conclude that the functional defect in FVIII 372-Cys is a consequence of the resistance to proteolysis of the internal scissile bond in the heavy chain.
我们从一名中度严重甲型血友病患者(FVIII,4 U/dL;FVIII:Ag,110 U/dL)中纯化了凝血因子VIII,并在用凝血酶进行时间进程激活后,对该蛋白质进行了蛋白质印迹分析。交叉反应物质阳性(CRM+)的FVIII在凝血酶激活前重链和轻链分布正常,与该酶孵育后,在740位和1689位进行了适当的切割。然而,该分子重链372位的正常凝血酶切割未发生。这一结果与在患者白细胞DNA中372密码子由C到T的转变一致,导致重链内部切割位点的精氨酸残基被半胱氨酸取代。该分子严重受损的功能活性证实,FVIII的重链必须进行蛋白水解才能在体内实现完全辅因子激活。然而,当该蛋白质与凝血酶孵育时,检测到了三倍的激活。与Pittman和Kaufman(《美国国家科学院院刊》85:2429,1988)描述的变体重组无B结构域分子FVIII 372-Ile相反,未检测到凝血酶介导的重链336位切割的证据。通过对凝血酶激活前后FVIII/血管性血友病因子(vWF)复合物的凝胶渗透研究,我们证明野生型FVIII的40 Kd A2结构域在被该酶切割后从vWF上解离。相比之下,在FVIII 372-Cys的情况下检测到不完全解离。我们得出结论,FVIII 372-Cys的功能缺陷是重链内部可裂解键对蛋白水解具有抗性的结果。