转甲状腺素
化学
四聚体
视黄醇结合蛋白
淀粉样变性
二氟尼萨尔
淀粉样疾病
生物化学
血浆蛋白结合
药理学
内科学
视黄醇
酶
淀粉样纤维
医学
疾病
维生素
淀粉样β
作者
Christopher L. Cioffi,Arun Raja,Parthasarathy Muthuraman,Aravindan Jayaraman,S. Jayakumar,András Váradi,Bóglárka Rácz,Konstantin Petrukhin
标识
DOI:10.1021/acs.jmedchem.1c00099
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.
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