首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Novel α2β1 Integrin Inhibitors Reveal That Integrin Binding to Collagen under Shear Stress Conditions Does Not Require Receptor Preactivation
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Novel α2β1 Integrin Inhibitors Reveal That Integrin Binding to Collagen under Shear Stress Conditions Does Not Require Receptor Preactivation

机译:新型α2β1整合素抑制剂揭示在剪切应力条件下整合素与胶原蛋白的结合不需要受体预活化

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摘要

The interaction between α2β1 integrin (GPIa/IIa, VLA-2) and vascular collagen is one of the initiating events in thrombus formation. Here, we describe two structurally similar sulfonamide derivatives, BTT-3033 and BTT-3034, and show that, under static conditions, they have an almost identical effect on α2-expressing CHO cell adhesion to collagen I, but only BTT-3033 blocks platelet attachment under flow (90 dynes/cm2). Differential scanning fluorimetry showed that both molecules bind to the α2I domain of the recombinant α2 subunit. To further study integrin binding mechanism(s) of the two sulfonamides, we created an α2 Y285F mutant containing a substitution near the metal ion-dependent adhesion site motif in the α2I domain. The action of BTT-3033, unlike that of BTT-3034, was dependent on Tyr-285. In static conditions BTT-3034, but not BTT-3033, inhibited collagen binding by an α2 variant carrying a conformationally activating E318W mutation. Conversely, in under flow conditions (90 dynes/cm2) BTT-3033, but not BTT-3034, inhibited collagen binding by an α2 variant expressing E336A loss-of-function mutation. Thus, the binding sites for BTT-3033 and BTT-3034 are differentially available in distinct integrin conformations. Therefore, these sulfonamides can be used to study the biological role of different functional stages of α2β1. Furthermore, only the inhibitor that recognized the non-activated conformation of α2β1 integrin under shear stress conditions effectively blocked platelet adhesion, suggesting that the initial interaction between integrin and collagen takes place prior to receptor activation.
机译:α2β1整合素(GPIa / IIa,VLA-2)与血管胶原蛋白之间的相互作用是血栓形成的起始事件之一。在这里,我们描述了两种结构相似的磺酰胺衍生物BTT-3033和BTT-3034,并表明,在静态条件下,它们对表达α2的CHO细胞粘附于胶原I的作用几乎相同,但只有BTT-3033阻断血小板在水流下(90达因/厘米 2 )附着。差示扫描荧光法显示两个分子都结合到重组α2亚基的α2I结构域。为了进一步研究两种磺酰胺的整联蛋白结合机理,我们创建了一个α2Y285F突变体,该突变体在α2I域中的金属离子依赖性粘附位点基序附近包含一个取代基。与BTT-3034不同,BTT-3033的作用取决于Tyr-285。在静态条件下,BTT-3034而非BTT-3033通过带有构象激活性E318W突变的α2变体抑制胶原蛋白结合。相反,在流动条件下(90达因/厘米 2 ),BTT-3033(而不是BTT-3034)通过表达E336A功能丧失突变的α2变体抑制胶原蛋白结合。因此,BTT-3033和BTT-3034的结合位点可以以不同的整联蛋白构型不同地获得。因此,这些磺酰胺可用于研究α2β1不同功能阶段的生物学作用。此外,只有在剪切应力条件下识别α2β1整联蛋白非激活构象的抑制剂才能有效地阻断血小板粘附,这表明整联蛋白与胶原蛋白之间的初始相互作用发生在受体激活之前。

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