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小鼠凝血因子X的分离与鉴定——生物物理和酶学性质

Isolation and characterization of mouse coagulation factor X -- biophysical and enzymological properties.

作者信息

James H L, Larson P J, Chao Y B, Yan S B, Kim D J

机构信息

Department of Biochemistry, The University of Texas Health Center at Tyler, 75710, USA.

出版信息

Thromb Haemost. 1997 Sep;78(3):1049-54.

PMID:9308752
Abstract

Mouse factor X was highly purified from plasma using barium ion precipitation and chromatography on anion-exchange and heparin-agarose affinity chromatography columns. Intact and reduced patterns of mouse factor X in SDS-PAGE were similar to those of human factor X. The specific absorption E 1%/1 cm at 280 nm of mouse factor X was found to be 11.2. Content of carbohydrate moieties of mouse factor X, determined to be 10% by weight, differs both quantitatively and quantitatively from that of human factor X, while the gamma-carboxyglutamic acid (Gla) and beta-hydroxy-aspartic acid (beta-OH-Asp) content were essentially the same as for human factor X. The amino-terminal amino acid sequences of the light and heavy chains of mouse factor X separated by SDS-PAGE were ANSFF--FKK and SVALXTSDSE, respectively. Underlined residues are non-identical with those of human factor X. Clotting time-based assays using human factor X-deficient plasma as substrate exhibited the following apparent extents of activation of factor X in mouse plasma, using human plasma as the standard: 195% (intrinsic); 200% (extrinsic); and 190% (RVV-X). Using the purified proteins in the same assay systems, the following apparent activation of mouse factor X was demonstrated, compared with human factorX: 195% (intrinsic); 27% (extrinsic); and 41% (RVV-X). These activity profiles suggest that the human extrinsic coagulation pathway functions less efficiently than the corresponding mouse pathway in the activation of mouse factor X. Furthermore, mouse brain thromboplastin satisfactorily replaced rabbit brain thromboplastin in extrinsic activation of factor X in mouse plasma, but not of human plasma or purified mouse or human factor X, in line with studies by others suggesting that human factor VIIa poorly activates factor X in the presence of mouse tissue factor. While fully RVV-X-activated mouse factor X activated human prothrombin at a rate equal to about 117% of that for human factor X, it hydrolyzed the synthetic substrate, S-2222, at a rate of only about 18% of that for human factor X. These results are expected to be useful in making the mouse suitable for study of the mammalian blood coagulation pathways.

摘要

利用钡离子沉淀法以及阴离子交换色谱和肝素 - 琼脂糖亲和色谱柱从血浆中高度纯化小鼠因子X。小鼠因子X在SDS - PAGE中的完整和还原图谱与人因子X的图谱相似。发现小鼠因子X在280nm处的比吸收E1%/1cm为11.2。小鼠因子X的碳水化合物部分含量经测定为10%(重量),在数量和质量上与人因子X均不同,而γ-羧基谷氨酸(Gla)和β-羟基天冬氨酸(β-OH-Asp)含量与人因子X基本相同。通过SDS - PAGE分离的小鼠因子X轻链和重链的氨基末端氨基酸序列分别为ANSFF--FKK和SVALXTSDSE。下划线标记的残基与人因子X的不同。以人因子X缺乏血浆为底物,基于凝血时间的测定显示,以人血浆为标准,小鼠血浆中因子X的激活程度如下:195%(内源性);200%(外源性);190%(RVV - X)。在相同的测定系统中使用纯化蛋白,与人类因子X相比,小鼠因子X的激活程度如下:195%(内源性);27%(外源性);41%(RVV - X)。这些活性谱表明,在激活小鼠因子X方面,人类外源性凝血途径的功能效率低于相应的小鼠途径。此外,小鼠脑凝血活酶在小鼠血浆中因子X的外源性激活中令人满意地替代了兔脑凝血活酶,但在人血浆或纯化的小鼠或人因子X中则不然,这与其他研究结果一致,即人因子VIIa在小鼠组织因子存在下对因子X的激活作用较差。虽然完全被RVV - X激活的小鼠因子X激活人凝血酶原的速率约为人因子X的117%,但它水解合成底物S - 2222的速率仅约为人因子X的18%。这些结果有望有助于使小鼠适用于研究哺乳动物的血液凝固途径。

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