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针对14-3-3/雌激素受体α复合物的分子胶的支架跳跃

Scaffold-hopping for molecular glues targeting the 14-3-3/ERα complex.

作者信息

Konstantinidou Markella, Zingiridis Marios, Pennings Marloes A M, Fragkiadakis Michael, Virta Johanna M, Revalde Jezrael L, Visser Emira J, Ottmann Christian, Brunsveld Luc, Neochoritis Constantinos G, Arkin Michelle R

机构信息

Department of Pharmaceutical Chemistry and Small Molecule Discovery Centre (SMDC) University of California San Francisco (UCSF), San Francisco, CA, USA.

Department of Chemistry University of Crete Voutes, Heraklion, Greece.

出版信息

Nat Commun. 2025 Jul 14;16(1):6467. doi: 10.1038/s41467-025-61176-4.

Abstract

Molecular glues, small molecules that bind cooperatively at a protein-protein interface, have emerged as powerful modalities for the modulation of protein-protein interactions (PPIs) and "undruggable" targets. The systematic identification of new chemical matter with a molecular glue mechanism of action remains a significant challenge in drug discovery. Here, we present a scaffold hopping approach, using as a starting point our previously developed molecular glues for the native 14-3-3/estrogen receptor alpha (ERα) complex. The novel, computationally designed scaffold is based on the Groebke-Blackburn-Bienaymé multi-component reaction (MCR), leading to drug-like analogs with multiple points of variation, thus enabling the rapid derivatization and optimization of the scaffold. Structure-activity relationships (SAR) are developed using orthogonal biophysical assays, such as intact mass spectrometry, TR-FRET and SPR. Rational structure-guided optimization is facilitated by multiple crystal structures of ternary complexes with the glues, 14-3-3 and phospho-peptides mimicking the highly disordered C-terminus of ERα. Cellular stabilization of 14-3-3/ERα for the most potent analogs is confirmed using a NanoBRET assay with full-length proteins in live cells. Our approach highlights the potential of MCR chemistry, combined with scaffold hopping, to drive the development and optimization of unprecedented molecular glue scaffolds.

摘要

分子胶是一类能在蛋白质-蛋白质界面协同结合的小分子,已成为调节蛋白质-蛋白质相互作用(PPI)和“不可成药”靶点的有力手段。系统鉴定具有分子胶作用机制的新化学物质仍然是药物发现中的一项重大挑战。在此,我们提出一种骨架跃迁方法,以我们之前开发的用于天然14-3-3/雌激素受体α(ERα)复合物的分子胶为起点。这种新型的、通过计算设计的骨架基于格罗布克-布莱克本-比奈梅多组分反应(MCR),可产生具有多个变异点的类药类似物,从而实现骨架的快速衍生化和优化。利用完整质谱、时间分辨荧光能量共振转移(TR-FRET)和表面等离子体共振(SPR)等正交生物物理分析方法建立构效关系(SAR)。与分子胶、14-3-3和模拟ERα高度无序C末端的磷酸化肽形成的三元复合物的多个晶体结构有助于进行合理的结构导向优化。使用活细胞中全长蛋白质的纳米BRET分析确认了最有效类似物对14-3-3/ERα的细胞稳定作用。我们的方法突出了MCR化学与骨架跃迁相结合推动前所未有的分子胶骨架开发和优化的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e282/12260087/8d7a23208e1e/41467_2025_61176_Fig1_HTML.jpg

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