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Deciphering the role of trehalose in hindering antithrombin polymerization

机译:解读海藻糖在阻止抗凝血酶聚合中的作用

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摘要

Serine protease inhibitors (serpins) family have a complex mechanism of inhibition that requires a large scale conformational change. Antithrombin (AT), a member of serpin superfamily serves as a key regulator of the blood coagulation cascade, deficiency of which leads to thrombosis. In recent years, a handful of studies have identified small compounds that retard serpin polymerization but abrogated the normal activity. Here, we screened small molecules to find potential leads that can reduce AT polymer formation. We identified simple sugar molecules that successfully blocked polymer formation without a significant loss of normal activity of AT under specific buffer and temperature conditions. Of these, trehalose proved to be most promising as it showed a marked decrease in the bead like polymeric structures of AT shown by electron microscopic analysis. A circular dichroism (CD) analysis indicated alteration in the secondary structure profile and an increased thermal stability of AT in the presence of trehalose. Guanidine hydrochloride (GdnHCl)-based unfolding studies of AT show the formation of a different intermediate in the presence of trehalose. A time-dependent fluorescence study using 1,1′-bi(4-anilino)naphthalene-5,5′-disulfonic acid (Bis-ANS) shows that trehalose affects the initial conformational change step in transition from native to polymer state through its binding to exposed hydrophobic residues on AT thus making AT less polymerogenic. In conclusion, trehalose holds promise by acting as an initial scaffold that can be modified to design similar compounds with polymer retarding propensity.
机译:丝氨酸蛋白酶抑制剂(丝氨酸蛋白酶抑制剂)家族具有复杂的抑制机制,需要大规模的构象变化。抗凝血酶(AT)是丝氨酸蛋白酶抑制剂超家族的成员,是凝血级联反应的关键调节剂,其缺乏会导致血栓形成。近年来,一些研究已经发现了一些小化合物,这些化合物可以延缓丝氨酸蛋白酶抑制剂的聚合反应,但是却不能正常发挥作用。在这里,我们筛选了小分子,以发现可以减少AT聚合物形成的潜在引线。我们确定了在特定缓冲液和温度条件下成功阻止聚合物形成而不会显着损失AT正常活性的简单糖分子。其中,海藻糖被证明是最有前途的,因为它通过电子显微镜分析显示出AT的珠状聚合物结构明显减少。圆二色性(CD)分析表明,在存在海藻糖的情况下,二级结构轮廓发生了变化,AT的热稳定性增强。基于盐酸胍(GdnHCl)的AT展开研究表明,在海藻糖存在下会形成不同的中间体。使用1,1'-双(4-苯胺基)萘-5,5'-二磺酸(Bis-ANS)进行的随时间变化的荧光研究表明,海藻糖会影响其从天然状态向聚合物状态转变的初始构象变化步骤与AT上暴露的疏水残基结合,从而使AT的聚合作用降低。总之,海藻糖有望通过用作初始支架而得到修饰,可以对其进行修饰以设计具有聚合物阻滞倾向的类似化合物。

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