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抗凝血酶III的N端结构域对于与α-凝血酶结合肝素及形成复合物至关重要,但对于α-凝血酶的裂解并非如此。

The N-terminal domain of antithrombin-III is essential for heparin binding and complex-formation with, but not cleavage by, alpha-thrombin.

作者信息

Austin R C, Sheffield W P, Rachubinski R A, Blajchman M A

机构信息

Canadian Red Cross Blood Transfusion Service, Hamilton, Ont.

出版信息

Biochem J. 1992 Mar 1;282 ( Pt 2)(Pt 2):345-51. doi: 10.1042/bj2820345.

Abstract

Normal and mutant forms of human antithrombin-III (AT-III) were synthesized in a cell-free system in order to identify putative functional domains required for heparin binding and complex-formation with alpha-thrombin. Heparin-Sepharose chromatography resulted in the elution of approx. 70% of cell-free-derived normal AT-III-(1-432)-polypeptide as a peak between 0.2 M- and 0.7 M-NaCl. The cell-free-derived normal AT-III also reacted with alpha-thrombin. Approx. 15% of this AT-III formed covalent complexes with alpha-thrombin in 2 min. Unfractionated heparin accelerated the rate of formation of such complexes. Two truncated forms of AT-III (amino acid residues 219-432 and 251-432), containing only the putative thrombin-binding domain, were synthesized independently in this cell-free system. These truncated AT-III polypeptides did not bind heparin and were unable to form stable covalent complexes with alpha-thrombin. However, both of these AT-III polypeptides were cleaved by alpha-thrombin, presumably at the reactive centre Arg-393-Ser-394. The formation of the disulphide bond between Cys-247 and Cys-430 in AT-III-(219-432)-polypeptide had no effect on the results obtained. Mutations in full-length AT-III at Cys-430 had no effect on the ability of AT-III to bind heparin. There was, however, a slight decrease in the formation of stable inhibitory complexes with alpha-thrombin. A cell-free-derived AT-III mutant, devoid of amino acid residues 41-49, which comprise heparin-binding region 1 of AT-III, had slightly decreased heparin binding compared with cell-free-derived normal AT-III-(1-432)-polypeptide. This mutant AT-III polypeptide was unable, however, to form a stable complex with alpha-thrombin. We conclude therefore that the N-terminal domain of AT-III is essential for both heparin binding and complex-formation with alpha-thrombin, but not for the cleavage of AT-III at its reactive centre by alpha-thrombin.

摘要

为了确定肝素结合以及与α-凝血酶形成复合物所需的假定功能结构域,在无细胞系统中合成了人抗凝血酶III(AT-III)的正常形式和突变形式。肝素-琼脂糖层析结果显示,约70%的无细胞来源的正常AT-III-(1-432)多肽在0.2M至0.7M氯化钠之间以一个峰的形式洗脱出来。无细胞来源的正常AT-III也能与α-凝血酶反应。约15%的这种AT-III在2分钟内与α-凝血酶形成共价复合物。未分级的肝素加速了此类复合物的形成速率。在这个无细胞系统中独立合成了两种截短形式的AT-III(氨基酸残基219-432和251-432),它们仅包含假定的凝血酶结合结构域。这些截短的AT-III多肽不结合肝素,也无法与α-凝血酶形成稳定的共价复合物。然而,这两种AT-III多肽都被α-凝血酶切割,推测是在反应中心Arg-393-Ser-394处。AT-III-(219-432)多肽中Cys-247和Cys-430之间二硫键的形成对所得结果没有影响。全长AT-III中Cys-430的突变对AT-III结合肝素的能力没有影响。然而,与α-凝血酶形成稳定抑制复合物的能力略有下降。一种无细胞来源的AT-III突变体,缺失了构成AT-III肝素结合区域1的氨基酸残基41-49,与无细胞来源的正常AT-III-(1-432)多肽相比,其肝素结合略有下降。然而,这种突变的AT-III多肽无法与α-凝血酶形成稳定的复合物。因此,我们得出结论,AT-III的N端结构域对于肝素结合以及与α-凝血酶形成复合物至关重要,但对于α-凝血酶在其反应中心切割AT-III并非必需。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e77/1130785/817cdc69ce91/biochemj00140-0046-a.jpg

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