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Identification of Transthyretin Fibril Formation Inhibitors Using Structure-Based Virtual Screening

机译:使用基于结构的虚拟筛选鉴定Transthyretin原纤维形成抑制剂

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摘要

Transthyretin (TTR) is the primary carrier for thyroxine (T-4) in cerebrospinal fluid and a secondary carrier in blood. TTR is a stable homotetramer, but certain factors, genetic or environmental, could promote its degradation to form amyloid fibrils. A docking study using crystal structures of wild-type TTR was planned; our aim was to design new ligands that are able to inhibit TTR fibril formation. The computational protocol was thought to overcome the multiple binding modes of the ligands induced by the peculiarity of the TTR binding site and by the pseudosymmetry of the site pockets, which generally weaken such structure-based studies. Two docking steps, one that is very fast and a subsequent step that is more accurate, were used to screen the Aldrich Market Select database. Five compounds were selected, and their activity toward inhibiting TTR fibril formation was assessed. Three compounds were observed to be actives, two of which have the same potency as the positive control, and the other was found to be a promising lead compound. These results validate a computational protocol that is able to archive information on the key interactions between database compounds and TTR, which is valuable for supporting further studies.
机译:Transthyretin(TTR)是脑脊液中甲状腺素(T-4)的主要载体和血液中的次级载体。 TTR是一种稳定的同性恋,但某些因素,遗传或环境,可以促进其降解形成淀粉样蛋白原纤维。计划使用野生型TTR晶体结构的对接研究;我们的目标是设计能够抑制TTR原纤维形成的新配体。据认为,计算协议克服TTR结合位点的特异性和由部位口袋的伪对比诱导的配体的多重结合模式,这通常削弱了这些基于结构的研究。两个对接步骤,一个非常快速的步骤和后续步骤更准确,用于筛选Aldrich Market Select Database。选择五种化合物,评估它们对抑制TTR原纤维形成的活性。观察到三种化合物是活性物质,其中两个具有与阳性对照相同的效力,并且另一个被发现是有前途的铅化合物。这些结果验证了能够归档数据库化合物和TTR之间的关键交互信息的计算协议,这对于支持进一步研究是有价值的。

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