不对称配体与转甲状腺素结合的结构证据。

Michele Cianci, Claudia Folli, Francesco Zonta, Paola Florio, Rodolfo Berni, Giuseppe Zanotti
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引用次数: 23

摘要

人转甲状腺素(TTR)是淀粉样蛋白的一个显著例子,一些能够稳定其天然状态的化合物已被提出作为治疗TTR淀粉样变性的有效药物。存在于TTR四聚体中的两个甲状腺素(T4)结合位点表现出负结合协同性。本文确定了三种天然多酚(紫菀芪、槲皮素和芹菜素)配合物中TTR的结构,其中这种不对称表现为存在一个具有明显配体占用率和相关电子密度的主结合位点和一个具有低得多的配体占用率的次要位点。对两个结合位点结构差异的分析结果与这种结合不对称是一致的。TTR配体对四聚体蛋白的两个T4结合位点的饱和能力不同,可归因于配体对较弱结合位点的亲和力不同。相比之下,在相同的实验条件下共结晶的高亲和力配体塔法米迪斯能够完全饱和两个T4结合位点。这种不对称的特点是两个结合位点的腔的构象存在微小但显著的差异。分子动力学模拟表明,溶液中存在更大的差异。在溶液中进行的竞争结合实验显示,在TTR中存在一个与T4不同的多酚类紫菀芪和槲皮素的优先结合位点。通过使用两种药物的混合物,可以利用TTR结合的不对称性来治疗TTR淀粉样变性,每种药物都表现出对不同结合位点的优先结合,从而有利于四聚体蛋白的饱和,从而使其稳定。
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Structural evidence for asymmetric ligand binding to transthyretin.

Human transthyretin (TTR) represents a notable example of an amyloidogenic protein, and several compounds that are able to stabilize its native state have been proposed as effective drugs in the therapy of TTR amyloidosis. The two thyroxine (T4) binding sites present in the TTR tetramer display negative binding cooperativity. Here, structures of TTR in complex with three natural polyphenols (pterostilbene, quercetin and apigenin) have been determined, in which this asymmetry manifests itself as the presence of a main binding site with clear ligand occupancy and related electron density and a second minor site with a much lower ligand occupancy. The results of an analysis of the structural differences between the two binding sites are consistent with such a binding asymmetry. The different ability of TTR ligands to saturate the two T4 binding sites of the tetrameric protein can be ascribed to the different affinity of ligands for the weaker binding site. In comparison, the high-affinity ligand tafamidis, co-crystallized under the same experimental conditions, was able to fully saturate the two T4 binding sites. This asymmetry is characterized by the presence of small but significant differences in the conformation of the cavity of the two binding sites. Molecular-dynamics simulations suggest the presence of even larger differences in solution. Competition binding assays carried out in solution revealed the presence of a preferential binding site in TTR for the polyphenols pterostilbene and quercetin that was different from the preferential binding site for T4. The TTR binding asymmetry could possibly be exploited for the therapy of TTR amyloidosis by using a cocktail of two drugs, each of which exhibits preferential binding for a distinct binding site, thus favouring saturation of the tetrameric protein and consequently its stabilization.

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