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凝血因子X与ADP刺激的单核细胞的可饱和高亲和力结合定义了Mac-1受体的一种新功能。

The saturable high affinity association of factor X to ADP-stimulated monocytes defines a novel function of the Mac-1 receptor.

作者信息

Altieri D C, Edgington T S

机构信息

Department of Immunology, Research Institute of Scripps Clinic, La Jolla, California 92037.

出版信息

J Biol Chem. 1988 May 25;263(15):7007-15.

PMID:2835359
Abstract

Initiation of the coagulation protease cascade as it assembles on cell surfaces requires limited proteolytic activation of the zymogen factor X. Not previously suspected to be the ligand of an organizing receptor on cell surfaces, we now describe that factor X specifically associates with cells of monocyte lineage and we identify the high affinity receptor for this zymogen. Following stimulation with ADP (10 microM), or with the ionophore ionomycin (1 microM), isolated human monocytes bind 125I-factor X in a saturable fashion with a dissociation constant (Kd) of 21.8-44.9 nM. Equilibrium binding analyses indicate that the reaction is optimal at room temperature, requires Ca2+ ions, and saturates at 128,500 +/- 21,300 molecules of 125I-factor X specifically associated with the cell surface. Molar excess of unlabeled factor X inhibits and reverses the binding, whereas the homologous gamma-carboxylated coagulation proteins factors II, VII, IX, IXa, and Xa are without effect. Similarly, chelation of divalent ions immediately dissociates bound 125I-factor X. The monoblast cell line U 937 and the monocytic cell line THP-1 when stimulated with ADP or ionomycin, bind 125I-factor X with characteristics similar to monocytes. Receptor identity was explored using antibodies to the leukocyte adhesive receptors Mac-1, LFA-1, and p150.95. Monoclonal antibodies specific for the alpha subunit of Mac-1 (M 1/70, LM 2/1) or for the common beta subunit (TS 1/18, 60.3) bound equally to resting and ADP- or ionomycin-stimulated cells and also completely blocked the binding of 125I-factor X to stimulated monocytes, U 937, or THP-1 cells. To distinguish between modulatory effects of the monoclonal antibodies and direct spatial hindrance binding of 125I-factor X to Mac-1 was analyzed directly. OKM10 anti-alpha subunit of Mac-1 monoclonal antibody immunoprecipitated 125I-factor X chemically cross-linked to its receptor on stimulated cells. In addition, the complement protein fragment C3bi, which is a recognized ligand for Mac-1, competitively inhibited the association of 125I-factor X. These findings indicate that human blood monocytes and less differentiated cells of this lineage possess an inducible receptor specific for factor X; and also support the conclusion that the heterodimeric leukocyte adhesive receptor Mac-1 functions as the specific receptor structure. We suggest that the novel properties of this receptor may be of importance in the organization and regulation of certain coagulation protease cascades on the monocyte surface.

摘要

凝血蛋白酶级联反应在细胞表面组装时,需要对酶原因子X进行有限的蛋白水解激活。此前未被怀疑是细胞表面组织受体的配体,我们现在描述因子X特异性地与单核细胞系细胞结合,并且我们鉴定了这种酶原的高亲和力受体。用ADP(10微摩尔)或离子载体离子霉素(1微摩尔)刺激后,分离的人单核细胞以饱和方式结合125I-因子X,解离常数(Kd)为21.8 - 44.9纳摩尔。平衡结合分析表明,该反应在室温下最佳,需要钙离子,并且在与细胞表面特异性结合的128,500±21,300个125I-因子X分子时达到饱和。未标记因子X的摩尔过量会抑制并逆转结合,而同源的γ-羧化凝血蛋白因子II、VII、IX、IXa和Xa则无作用。同样,二价离子的螯合会立即使结合的125I-因子X解离。单核母细胞系U 937和单核细胞系THP-1在用ADP或离子霉素刺激后,以与单核细胞相似的特性结合125I-因子X。使用针对白细胞黏附受体Mac-1、LFA-1和p150.95的抗体探索受体身份。对Mac-1的α亚基(M 1/70,LM 2/1)或共同β亚基(TS 1/18,60.3)特异的单克隆抗体与静息及ADP或离子霉素刺激的细胞同等结合,并且也完全阻断125I-因子X与刺激的单核细胞、U 937或THP-1细胞的结合。为了区分单克隆抗体的调节作用和125I-因子X与Mac-1的直接空间位阻结合,直接分析了125I-因子X与Mac-1的结合。OKM10抗Mac-1α亚基单克隆抗体免疫沉淀了在刺激细胞上与其受体化学交联的125I-因子X。此外,补体蛋白片段C3bi是Mac-认可的配体,竞争性抑制125I-因子X的结合。这些发现表明,人血单核细胞及该谱系中分化程度较低的细胞具有对因子X特异的诱导性受体;也支持异二聚体白细胞黏附受体Mac-1作为特异性受体结构的结论。我们认为该受体的新特性可能在单核细胞表面某些凝血蛋白酶级联反应的组织和调节中具有重要意义。

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