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转甲状腺素蛋白/橄榄苦苷苷元复合物:对抗转甲状腺素蛋白淀粉样变性的新工具。

The Transthyretin/Oleuropein Aglycone Complex: A New Tool against TTR Amyloidosis.

作者信息

Bemporad Francesco, Leri Manuela, Ramazzotti Matteo, Stefani Massimo, Bucciantini Monica

机构信息

Department of Experimental and Clinical Biomedical Sciences "Mario Serio", University of Florence, Viale Morgagni 50, 50134 Florence, Italy.

出版信息

Pharmaceuticals (Basel). 2022 Feb 23;15(3):277. doi: 10.3390/ph15030277.

Abstract

The release of monomers from the homotetrameric protein transthyretin (TTR) is the first event of a cascade, eventually leading to sporadic or familial TTR amyloidoses. Thus, ligands able to stabilize TTR and inhibit monomer release are subject of intense scrutiny as potential treatments against these pathologies. Here, we investigated the interaction between TTR and a non-glycated derivative of the main olive polyphenol, oleuropein (OleA), known to interfere with TTR aggregation. We coupled fluorescence studies with molecular docking to investigate the OleA/TTR interaction using wild-type TTR, a monomeric variant, and the L55P cardiotoxic mutant. We characterized a fluorescence band emitted by OleA upon formation of the OleA/TTR complex. Exploiting this signal, we found that a poorly specific non-stoichiometric interaction occurs on the surface of the protein and a more specific stabilizing interaction takes place in the ligand binding pocket of TTR, exhibiting a of 3.23 ± 0.32 µM, with two distinct binding sites. OleA interacts with TTR in different modes, stabilizing it and preventing its dissociation into monomers, with subsequent misfolding. This result paves the way to the possible use of OleA to prevent degenerative diseases associated with TTR misfolding.

摘要

同四聚体蛋白转甲状腺素蛋白(TTR)释放单体是一系列反应的首个事件,最终导致散发性或家族性TTR淀粉样变性。因此,能够稳定TTR并抑制单体释放的配体作为针对这些病症的潜在治疗方法受到了密切关注。在此,我们研究了TTR与主要橄榄多酚橄榄苦苷(OleA)的非糖化衍生物之间的相互作用,已知该衍生物会干扰TTR聚集。我们将荧光研究与分子对接相结合,以使用野生型TTR、单体变体和L55P心脏毒性突变体研究OleA/TTR相互作用。我们表征了OleA/TTR复合物形成时OleA发出的荧光带。利用这一信号,我们发现在蛋白质表面发生了非特异性的非化学计量相互作用,而在TTR的配体结合口袋中发生了更特异性的稳定相互作用,其解离常数为3.23±0.32µM,有两个不同的结合位点。OleA以不同方式与TTR相互作用,使其稳定并防止其解离成单体,进而防止错误折叠。这一结果为可能使用OleA预防与TTR错误折叠相关的退行性疾病铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ed0/8953266/e03c420b2e8c/pharmaceuticals-15-00277-g001.jpg

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