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抗凝血酶III - 汉密尔顿,丙氨酸382突变为苏氨酸:一种抗凝血酶III变体,它作为α-凝血酶和因子Xa的底物而非抑制剂。

Antithrombin-III-Hamilton, Ala 382 to Thr: an antithrombin-III variant that acts as a substrate but not an inhibitor of alpha-thrombin and factor Xa.

作者信息

Austin R C, Rachubinski R A, Ofosu F A, Blajchman M A

机构信息

Canadian Red Cross Blood Transfusion Service, Hamilton, Ontario.

出版信息

Blood. 1991 May 15;77(10):2185-9.

PMID:2029579
Abstract

Antithrombin-III-Hamilton has been shown to be a structural variant of antithrombin-III (AT-III) with normal heparin affinity but impaired protease inhibitory activity. The molecular defect of AT-III-Hamilton is the substitution of Thr for Ala at amino acid residue 382. The plasma of affected individuals contains approximately equal quantities of normal AT-III and AT-III-Hamilton. When AT-III was isolated from the plasma of the propositus by heparin-Sepharose chromatography, it had identical mobility on sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) to normal plasma-derived AT-III, under both reducing and nonreducing conditions. However, the AT-III-Hamilton species, separated from the propositus' normal AT-III by a combination of heparin-Sepharose and thrombin-Sepharose chromatography, had increased mobility on reductive SDS-PAGE compared with AT-III from the propositus isolated by heparin-Sepharose chromatography alone. Under nonreducing conditions this AT-III-Hamilton species had decreased mobility compared with AT-III from the propositus (or normal AT-III) isolated only by heparin-Sepharose chromatography. When incubated with either human alpha-thrombin or human factor Xa, this AT-III-Hamilton species was unreactive. Approximately 50% of the AT-III from the propositus isolated by heparin-Sepharose chromatography, when incubated with either human alpha-thrombin or factor Xa, did not form complex but was cleaved, presumably at the reactive center Arg393-Ser394. To further substantiate the biological behavior of this variant, AT-III-Hamilton polypeptides were synthesized in a cell-free system. This recombinantly produced AT-III-Hamilton, when incubated with either human alpha-thrombin or factor Xa, was cleaved by both these proteases, but did not show any complex formation. The results indicate that AT-III-Hamilton does not form a stable covalent inhibitory complex with these serine proteases but can be cleaved at the reactive center. Thus, the inhibition of serine proteases by their natural inhibitors (the serpins) involves at least two separate, but interrelated events; hydrolysis at the reactive center followed by complex formation. AT-III-Hamilton is capable of only the first of these events.

摘要

抗凝血酶III - 汉密尔顿已被证明是抗凝血酶III(AT - III)的一种结构变体,具有正常的肝素亲和力,但蛋白酶抑制活性受损。AT - III - 汉密尔顿的分子缺陷是在氨基酸残基382处苏氨酸替代了丙氨酸。受影响个体的血浆中含有大致等量的正常AT - III和AT - III - 汉密尔顿。当通过肝素 - 琼脂糖层析从先证者血浆中分离出AT - III时,在还原和非还原条件下,其在十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS - PAGE)上的迁移率与正常血浆来源的AT - III相同。然而,通过肝素 - 琼脂糖和凝血酶 - 琼脂糖层析相结合从先证者的正常AT - III中分离出的AT - III - 汉密尔顿物种,与仅通过肝素 - 琼脂糖层析从先证者中分离出的AT - III相比,在还原SDS - PAGE上的迁移率增加。在非还原条件下,这种AT - III - 汉密尔顿物种与仅通过肝素 - 琼脂糖层析从先证者(或正常AT - III)中分离出的AT - III相比,迁移率降低。当与人类α - 凝血酶或人类因子Xa一起孵育时,这种AT - III - 汉密尔顿物种无反应性。通过肝素 - 琼脂糖层析从先证者中分离出的约50%的AT - III,当与人类α - 凝血酶或因子Xa一起孵育时,不形成复合物但被裂解,推测是在反应中心精氨酸393 - 丝氨酸394处。为了进一步证实这种变体的生物学行为,在无细胞系统中合成了AT - III - 汉密尔顿多肽。这种重组产生的AT - III - 汉密尔顿,当与人类α - 凝血酶或因子Xa一起孵育时,被这两种蛋白酶裂解,但未显示出任何复合物形成。结果表明,AT - III - 汉密尔顿不会与这些丝氨酸蛋白酶形成稳定的共价抑制复合物,但可在反应中心被裂解。因此,丝氨酸蛋白酶被其天然抑制剂(丝氨酸蛋白酶抑制剂)抑制至少涉及两个独立但相互关联的事件;在反应中心水解,随后形成复合物。AT - III - 汉密尔顿仅能进行这些事件中的第一个。

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