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用V8蛋白酶探究人抗凝血酶III的肝素结合结构域

Probing the heparin-binding domain of human antithrombin III with V8 protease.

作者信息

Liu C S, Chang J Y

出版信息

Eur J Biochem. 1987 Sep 1;167(2):247-52. doi: 10.1111/j.1432-1033.1987.tb13330.x.

Abstract

From structural analysis on genetically abnormal and chemically modified human antithrombin III [Koide, T., Odani, S., Takahashi, K., Ono, T. and Sakuragawa, N. (1984) Proc. Natl Acad. Sci. USA 81, 289-293; Chang, J.-Y. and Tran, T. H., (1986) J. Biol. Chem. 261, 1174-1176; Blackburn, M. N., Smith, R. L., Carson, J. and Sibley, C. C. (1984) J. Biol. Chem. 259, 939-941], the heparin-binding site of antithrombin III has been suggested to be in the region of Pro-41, Arg-47 and Trp-49. In this study the heparin-binding site was probed by preferential cleavage of V8 protease on heparin-treated and non-treated native antithrombin III. The study has been based on the presumption that the heparin-binding site of antithrombin III is situated at exposed surface domain and may be preferentially attacked during limited proteolytic digestion. Partially digested antithrombin III samples were monitored by quantitative amino-terminal analysis and amino acid sequencing to identify the preferential cleavage sites. 1-h-digested antithrombin III was separated on HPLC and peptide fragments were isolated and characterized both qualitatively and quantitatively. The results reveal that Glu-Gly (residues 34-35), Glu-Ala (residues 42-43) and Glu-Leu (residues 50-51) are three preferential cleavage sites for V8 protease and their cleavage, especially the Glu-Ala and the Glu-Leu sites, was drastically inhibited when antithrombin III was preincubated with heparin. Both high-affinity and low-affinity antithrombin-III-binding heparins were shown to inhibit the V8 protease digestion of native antithrombin III, but the high-affinity sample exhibited a higher inhibition activity than the low-affinity heparin. These findings (a) imply that the segment containing residues 34-51 is among the most exposed region of native antithrombin III and (b) support the previous conclusions that this region may play a pivotal role in the heparin binding.

摘要

通过对基因异常和化学修饰的人抗凝血酶III进行结构分析[小出哲、小谷信、高桥健、小野哲、樱川直(1984年),《美国国家科学院院刊》81卷,289 - 293页;张美玉、陈秋红(1986年),《生物化学杂志》261卷,1174 - 1176页;布莱克本、史密斯、卡森、西布利(1984年),《生物化学杂志》259卷,939 - 941页],抗凝血酶III的肝素结合位点被认为位于第41位脯氨酸、第47位精氨酸和第49位色氨酸所在区域。在本研究中,通过V8蛋白酶对肝素处理和未处理的天然抗凝血酶III进行优先切割来探测肝素结合位点。该研究基于这样的推测:抗凝血酶III的肝素结合位点位于暴露的表面结构域,在有限的蛋白水解消化过程中可能会被优先攻击。通过定量氨基末端分析和氨基酸测序对部分消化的抗凝血酶III样品进行监测,以确定优先切割位点。将1小时消化的抗凝血酶III在高效液相色谱上分离,分离并定性和定量表征肽片段。结果表明,Glu - Gly(第34 - 35位残基)、Glu - Ala(第42 - 43位残基)和Glu - Leu(第50 - 51位残基)是V8蛋白酶的三个优先切割位点,当抗凝血酶III与肝素预孵育时,它们的切割,尤其是Glu - Ala和Glu - Leu位点的切割受到显著抑制。高亲和力和低亲和力的抗凝血酶III结合肝素均显示出抑制天然抗凝血酶III的V8蛋白酶消化作用,但高亲和力样品的抑制活性高于低亲和力肝素。这些发现(a)表明包含第34 - 51位残基的片段是天然抗凝血酶III最暴露的区域之一,(b)支持了先前的结论,即该区域可能在肝素结合中起关键作用。

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