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Trapping of palindromic ligands within native transthyretin prevents amyloid formation.

机译:在天然运甲状腺素蛋白内截留回文配体可防止淀粉样蛋白形成。

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摘要

Transthyretin (TTR) amyloidosis is a fatal disease for which new therapeutic approaches are urgently needed. We have designed two palindromic ligands, 2,2'-(4,4'-(heptane-1,7-diylbis(oxy))bis(3,5-dichloro-4,1-phenylene)) bis(azanediyl)dibenzoic acid (mds84) and 2,2'-(4,4'-(undecane-1,11-diylbis(oxy))bis(3,5-dichloro-4,1-phenylene)) bis(azanediyl)dibenzoic acid (4ajm15), that are rapidly bound by native wild-type TTR in whole serum and even more avidly by amyloidogenic TTR variants. One to one stoichiometry, demonstrable in solution and by MS, was confirmed by X-ray crystallographic analysis showing simultaneous occupation of both T4 binding sites in each tetrameric TTR molecule by the pair of ligand head groups. Ligand binding by native TTR was irreversible under physiological conditions, and it stabilized the tetrameric assembly and inhibited amyloidogenic aggregation more potently than other known ligands. These superstabilizers are orally bioavailable and exhibit low inhibitory activity against cyclooxygenase (COX). They offer a promising platform for development of drugs to treat and prevent TTR amyloidosis.
机译:甲状腺素转运蛋白(TTR)淀粉样变性病是一种致命疾病,迫切需要新的治疗方法。我们设计了两个回文配体,2,2'-(4,4'-(庚烷1,7-二基双(氧基))双(3,5-二氯-4,1-亚苯基))双(氮杂二基)二苯甲酸酸(mds84)和2,2'-(4,4'-(十一烷-1,11-二基双(氧基))双(3,5-二氯-4,1-亚苯基))双(氮杂二基)二苯甲酸( 4ajm15),它们在整个血清中被天然野生型TTR迅速结合,甚至由淀粉样蛋白产生的TTR变体强烈结合。在X射线晶体学分析中证实了在溶液中和通过MS可证明的一对一化学计量,显示了每个四聚体TTR分子中两个T4结合位点被一对配体头基同时占据。在生理条件下,天然TTR对配体的结合是不可逆的,与其他已知配体相比,它稳定了四聚体组装并更有效地抑制了淀粉样生成。这些超级稳定剂可口服生物利用,并且对环氧合酶(COX)的抑制活性较低。它们为开发治疗和预防TTR淀粉样变性的药物提供了一个有希望的平台。

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