首页> 外文期刊>Journal of Medicinal Chemistry >Identification of Transthyretin Tetramer Kinetic Stabilizers That Are Capable of Inhibiting the Retinol-Dependent Retinol Binding Protein 4-Transthyretin Interaction: Potential Novel Therapeutics for Macular Degeneration, Transthyretin Amyloidosis, and Their Common Age-Related Comorbidities
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Identification of Transthyretin Tetramer Kinetic Stabilizers That Are Capable of Inhibiting the Retinol-Dependent Retinol Binding Protein 4-Transthyretin Interaction: Potential Novel Therapeutics for Macular Degeneration, Transthyretin Amyloidosis, and Their Common Age-Related Comorbidities

机译:能够抑制视黄醇依赖性视黄醇结合蛋白 4-转甲状腺素蛋白相互作用的转甲状腺素蛋白四聚体动力学稳定剂的鉴定:黄斑变性、转甲状腺素蛋白淀粉样变性及其常见年龄相关合并症的潜在新疗法

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摘要

Dissociation of transthyretin (TTR) tetramers may lead to misfolding and aggregation of proamyloidogenic monomers, which underlies TTR amyloidosis (ATTR) pathophysiology. ATTR is a progressive disease resulting from the deposition of toxic fibrils in tissues that predominantly presents clinically as amyloid cardiomyopathy and peripheral polyneuropathy. Ligands that bind to and kinetically stabilize TTR tetramers prohibit their dissociation and may prevent ATTR onset. Drawing from clinically investigated AG10, we designed a constrained congener (14) that exhibits excellent TTR tetramer binding potency, prevents TTR aggregation in a gel-based assay, and possesses desirable pharmacokinetics in mice. Additionally, 14 significantly lowers murine serum retinol binding protein 4 (RBP4) levels despite a lack of binding at that protein's all-trans-retinol site. We hypothesize that kinetic stabilization of TTR tetramers via 14 is allosterically hindering all-trans-retinol-dependent RBP4-TTR tertiary complex formation and that the compound could present ancillary therapeutic utility for indications treated with RBP4 antagonists, such as macular degeneration.
机译:转甲状腺素蛋白 (TTR) 四聚体的解离可能导致促淀粉样蛋白单体的错误折叠和聚集,这是 TTR 淀粉样变性 (ATTR) 病理生理学的基础。ATTR 是一种进展性疾病,由组织中有毒原纤维沉积引起,临床上主要表现为淀粉样心肌病和周围多发性神经病。与TTR四聚体结合并在动力学上稳定的配体可抑制其解离,并可能阻止ATTR的发生。借鉴临床研究的 AG10,我们设计了一种约束同系物 (14),该同系物具有出色的 TTR 四聚体结合效力,在基于凝胶的测定中可防止 TTR 聚集,并在小鼠中具有理想的药代动力学。此外,14 显着降低小鼠血清视黄醇结合蛋白 4 (RBP4) 水平,尽管该蛋白的全反式视黄醇位点缺乏结合。我们假设通过 14 对 TTR 四聚体的动力学稳定在变构上阻碍了全反式视黄醇依赖性 RBP4-TTR 三级复合物的形成,并且该化合物可能对用 RBP4 拮抗剂治疗的适应症(例如黄斑变性)具有辅助治疗效用。

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