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在培养的人内皮细胞表面组装并表达内因子IX激活剂复合物。

Assembly and expression of an intrinsic factor IX activator complex on the surface of cultured human endothelial cells.

作者信息

Berrettini M, Schleef R R, Heeb M J, Hopmeier P, Griffin J H

机构信息

Department of Molecular and Experimental Medicine, Scripps Research Institute, La Jolla, California 92037.

出版信息

J Biol Chem. 1992 Oct 5;267(28):19833-9.

PMID:1400299
Abstract

Endothelial cells expose specific receptors for blood clotting factors and, upon perturbation, can initiate and propagate the reactions of the extrinsic pathway of blood coagulation leading to fibrin formation on the cell surface. The existence of an intrinsic mechanism of Factor IX activation on cultured human umbilical vein cells (HUVECs) was investigated by studies of the interaction between HUVECs and two proteins of the contact activation system, the cofactor high molecular weight kininogen (H-kininogen) and the zymogen Factor XI. In the presence of zinc ions (10-300 microM), 125I-labeled H-kininogen bound to HUVECs in a time-dependent, reversible, and saturable manner, with calcium ions exerting an inhibitory effect on the zinc-dependent binding. Analysis of the binding data by the LIGAND computer program indicated that HUVECs, in the presence of 2 mM CaCl2 and 100 microM ZnCl2 at 37 degrees C, bound 1.14 x 10(7) H-kininogen molecules per cell with an apparent dissociation constant of 55 nM. HUVEC-bound H-kininogen functions as the cell surface receptor for both 125I-labeled Factor XI and 125I-labeled Factor XIa, since HUVECs cultured in contact factor-depleted serum do not detectably bind either the zymogen or the enzyme in the absence of H-kininogen and zinc ions. In the presence of saturating concentrations of H-kininogen, 2 mM CaCl2 and 100 microM ZnCl2, the binding of 125I-labeled Factor XI and Factor XIa to HUVECs was time-dependent, reversible, and saturable, with apparent dissociation constants of 4.5 and 1.5 nM, respectively. HUVEC-bound complexes of H-kininogen and Factor XI generated Factor XIa activity only after the addition of purified Factor XIIa, and cell-bound Factor XIa in turn activated Factor IX, as documented by a 3H-labeled activation peptide release assay for 3H-Factor IX activation. The results indicate that cultured HUVECs provide a surface for the assembly and expression of an intrinsic Factor IX activator complex that may participate in the initiation of blood coagulation at sites of vascular injury.

摘要

内皮细胞暴露出血液凝血因子的特异性受体,受到扰动时,可启动并传播血液凝固外源性途径的反应,导致在细胞表面形成纤维蛋白。通过研究人脐静脉内皮细胞(HUVECs)与接触激活系统的两种蛋白(辅因子高分子量激肽原(H-激肽原)和酶原因子XI)之间的相互作用,对培养的人脐静脉内皮细胞上因子IX激活的内在机制进行了研究。在锌离子(10 - 300 microM)存在的情况下,125I标记的H-激肽原以时间依赖性、可逆性和饱和性的方式与HUVECs结合,钙离子对锌依赖性结合具有抑制作用。用LIGAND计算机程序分析结合数据表明,在37℃下,当存在2 mM CaCl2和100 microM ZnCl2时,每个细胞结合1.14×10(7)个H-激肽原分子,表观解离常数为55 nM。结合在HUVECs上的H-激肽原作为125I标记的因子XI和125I标记的因子XIa的细胞表面受体,因为在缺乏H-激肽原和锌离子的情况下,在接触因子缺乏的血清中培养的HUVECs无法检测到结合酶原或酶。在存在饱和浓度的H-激肽原、2 mM CaCl2和100 microM ZnCl2的情况下,125I标记的因子XI和因子XIa与HUVECs的结合是时间依赖性、可逆性和饱和性的,表观解离常数分别为4.5和1.5 nM。结合在HUVECs上的H-激肽原和因子XI复合物仅在加入纯化的因子XIIa后才产生因子XIa活性,如通过用于3H-因子IX激活的3H标记激活肽释放试验所证明的,细胞结合的因子XIa进而激活因子IX。结果表明,培养的HUVECs为内在因子IX激活复合物的组装和表达提供了一个表面,该复合物可能参与血管损伤部位的血液凝固起始过程。

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