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鉴定从天冬氨酸514至谷氨酸542作为血管性血友病因子中糖蛋白Ib-IX复合物受体识别序列。瑞斯托菌素和蛇毒巴曲酶对血管性血友病因子的调节机制。

Identification of aspartic acid 514 through glutamic acid 542 as a glycoprotein Ib-IX complex receptor recognition sequence in von Willebrand factor. Mechanism of modulation of von Willebrand factor by ristocetin and botrocetin.

作者信息

Berndt M C, Ward C M, Booth W J, Castaldi P A, Mazurov A V, Andrews R K

机构信息

Vascular Biology Laboratory, Baker Medical Research Institute, Prahran, Victoria, Australia.

出版信息

Biochemistry. 1992 Nov 17;31(45):11144-51. doi: 10.1021/bi00160a027.

Abstract

As the first step in hemostasis, the binding of von Willebrand factor (vWF) to the platelet membrane glycoprotein (GP) Ib-IX complex is essential for platelet adhesion at high-shear blood flow. This interaction in vivo requires the prior binding of vWF to the subendothelial matrix, a process which exposes a normally cryptic binding site on vWF for the GP Ib-IX complex. This process can be mimicked in vitro by modulators such as ristocetin or the snake venom protein botrocetin or by desialation of vWF. We have previously localized the GP Ib binding site on vWF to a monomeric dispase fragment which extends from Leu-480/Val-481 to Gly-718 in the primary sequence of mature vWF [Andrews, R. K., Gorman, J. J., Booth, W. J., Corino, G. L., Castaldi, P. A., & Berndt, M. C. (1989) Biochemistry 28, 8326-8336]. This fragment also contains a distinct binding site for botrocetin. Analysis of synthetic peptides corresponding to hydrophilic stretches of sequence within this fragment indicated that the sequence Asp-514-Glu-542 represents a major adhesive sequence involved in receptor recognition. This peptide inhibited both the ristocetin- and botrocetin-mediated binding of vWF to either platelets or purified GP Ib-IX complex (IC50 approximately 50-200 microM) as well as the asialo-vWF- and bovine vWF-dependent agglutination of platelets. Both the N- and C-terminal halves of the peptide were inhibitory but less so than the intact peptide. This peptide also inhibited botrocetin binding to vWF, suggesting that botrocetin modulates vWF-GP Ib interaction by binding in close proximity to the vWF adhesion sequence.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

作为止血的第一步,血管性血友病因子(vWF)与血小板膜糖蛋白(GP)Ib-IX复合物的结合对于血小板在高剪切血流状态下的黏附至关重要。这种体内相互作用要求vWF预先与内皮下基质结合,该过程会暴露出vWF上一个通常隐蔽的GP Ib-IX复合物结合位点。此过程在体外可通过诸如瑞斯托霉素或蛇毒蛋白博托西汀等调节剂模拟,或通过vWF的去唾液酸化模拟。我们先前已将vWF上的GP Ib结合位点定位至一个单体性的分散酶片段,该片段在成熟vWF的一级序列中从Leu-480/Val-481延伸至Gly-718 [安德鲁斯,R.K.,戈尔曼,J.J.,布斯,W.J.,科里诺,G.L.,卡斯塔尔迪,P.A.,& 伯恩特,M.C.(1989年)《生物化学》28卷,8326 - 8336页]。该片段还包含一个独特的博托西汀结合位点。对与该片段内亲水性序列延伸相对应的合成肽的分析表明,序列Asp-514-Glu-542代表参与受体识别的主要黏附序列。此肽抑制vWF与血小板或纯化的GP Ib-IX复合物的瑞斯托霉素介导及博托西汀介导的结合(IC50约为50 - 200 microM),以及去唾液酸vWF和牛vWF依赖的血小板凝集。该肽的N端和C端两半均具有抑制作用,但比完整肽的抑制作用弱。此肽还抑制博托西汀与vWF的结合,表明博托西汀通过在靠近vWF黏附序列处结合来调节vWF - GP Ib相互作用。(摘要截短于250字)

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