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蛇毒抗栓酶的RGD环和C末端结构域对αIIbβ3和α(v)β3整合素识别及配体诱导结合位点表达的意义

Significance of RGD loop and C-terminal domain of echistatin for recognition of alphaIIb beta3 and alpha(v) beta3 integrins and expression of ligand-induced binding site.

作者信息

Marcinkiewicz C, Vijay-Kumar S, McLane M A, Niewiarowski S

机构信息

Department of Physiology, Sol Sherry Thrombosis Research Center, Temple University School of Medicine, Philadelphia, PA 19140, USA.

出版信息

Blood. 1997 Aug 15;90(4):1565-75.

PMID:9269775
Abstract

Echistatin is a viper venom disintegrin containing RGD loop maintained by disulfide bridges. It binds with a high affinity to alpha(v) beta3 and alphaIIb beta3 and it induces extensive conformational changes in these integrins resulting in expression of ligand-induced binding site (LIBS) epitopes. We investigated the activities of echistatin and its three analogues (R24A, D27W, echistatin 1-41). R24A echistatin did not react with alphaIIb beta3 and alpha(v) beta3 integrins and did not cause LIBS effect. D27W echistatin showed increased binding to alphaIIb beta3 and decreased binding to alpha(v) beta3. This substitution impaired the ability of echistatin to induce LIBS in alpha(v) beta3 integrin. Deletion of nine C-terminal amino acids of echistatin decreased its ability to bind alphaIIb beta3 and inhibit platelet aggregation. Truncated echistatin failed to induce LIBS epitopes on cells transfected with alphaIIb beta3 and alpha(v) beta3 genes. The ability of echistatin 1-41 to compete with binding of vitronectin to immobilized alpha(v) beta3 and monoclonal antibody 7E3 to platelets and to VNRC3 cells was decreased, although this analogue, after immobilization, retained its ability to bind purified alpha(v) beta3. We propose a hypothesis in which echistatin's RGD loop determines selective recognition of alphaIIb beta3 and alpha(v) beta3 integrin, whereas the C-terminal domain supports its binding to resting integrin and significantly contributes to the expression of LIBS epitope and to conformational changes of the receptor, leading to a further increase of the binding affinity of echistatin and of the inhibitory effect.

摘要

echistatin是一种蝰蛇毒解整合素,含有由二硫键维持的RGD环。它与α(v)β3和αIIbβ3具有高亲和力结合,并在这些整合素中诱导广泛的构象变化,导致配体诱导结合位点(LIBS)表位的表达。我们研究了echistatin及其三种类似物(R24A、D27W、echistatin 1-41)的活性。R24A echistatin不与αIIbβ3和α(v)β3整合素反应,也不引起LIBS效应。D27W echistatin显示与αIIbβ3的结合增加,与α(v)β3的结合减少。这种取代损害了echistatin在α(v)β3整合素中诱导LIBS的能力。echistatin C末端九个氨基酸的缺失降低了其结合αIIbβ3和抑制血小板聚集的能力。截短的echistatin未能在转染αIIbβ3和α(v)β3基因的细胞上诱导LIBS表位。echistatin 1-41与玻连蛋白与固定化α(v)β3的结合以及单克隆抗体7E3与血小板和VNRC3细胞的结合竞争的能力降低,尽管这种类似物在固定后保留了其结合纯化α(v)β3的能力。我们提出了一个假说,其中echistatin的RGD环决定了对αIIbβ3和α(v)β3整合素的选择性识别,而C末端结构域支持其与静息整合素的结合,并对LIBS表位的表达和受体的构象变化有显著贡献,导致echistatin的结合亲和力和抑制作用进一步增加。

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