van Veldhuisen Thijs W, Dijkstra Renske M J, Koops Auke A, Cossar Peter J, van Hest Jan C M, Brunsveld Luc
Laboratory of Chemical Biology, Department of Biomedical Engineering and Institute for Complex Molecular Systems, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.
J Am Chem Soc. 2025 Feb 12;147(6):5386-5397. doi: 10.1021/jacs.4c17567. Epub 2025 Jan 28.
Misregulation of protein-protein interactions (PPIs) underlies many diseases; hence, molecules that stabilize PPIs, known as molecular glues, are promising drug candidates. Identification of novel molecular glues is highly challenging among others because classical biochemical assays in dilute aqueous conditions have limitations for evaluating weak PPIs and their stabilization by molecular glues. This hampers the systematic discovery and evaluation of molecular glues. Here, we present a synthetic condensate platform for the study of PPIs and molecular glues in a crowded macromolecular environment that more closely resembles the dense cellular milieu. With this platform, weak PPIs can be enhanced by sequestration. The condensates, based on amylose derivatives, recruit the hub protein 14-3-3 via affinity-based uptake, which results in high local protein concentrations ideal for the efficient screening of molecular glues. Clients of 14-3-3 are sequestered in the condensates based on their enhanced affinity upon treatment with molecular glues. Fine control over the condensate environment is illustrated by modulating the reactivity of dynamic covalent molecular glues by the adjustment of pH and the redox environment. General applicability of the system for screening of molecular glues is highlighted by using the nuclear receptor PPARγ, which recruits coregulators via an allosteric PPI stabilization mechanism. The condensate environment thus provides a unique dense molecular environment to enhance weak PPIs and enable subsequent evaluation of small-molecule stabilization in a molecular setting chemically en route to the cellular interior.
蛋白质-蛋白质相互作用(PPI)的失调是许多疾病的基础;因此,稳定PPI的分子,即所谓的分子胶,是很有前景的候选药物。鉴定新型分子胶极具挑战性,尤其是因为在稀水溶液条件下的经典生化分析在评估弱PPI及其被分子胶稳定方面存在局限性。这阻碍了分子胶的系统发现和评估。在这里,我们提出了一个合成凝聚物平台,用于在更类似于致密细胞环境的拥挤大分子环境中研究PPI和分子胶。通过这个平台,弱PPI可以通过隔离来增强。基于直链淀粉衍生物的凝聚物通过基于亲和力的摄取招募枢纽蛋白14-3-3,这导致了高局部蛋白质浓度,非常适合高效筛选分子胶。14-3-3的客户在经分子胶处理后,基于其增强的亲和力而被隔离在凝聚物中。通过调节pH值和氧化还原环境来调节动态共价分子胶的反应性,说明了对凝聚物环境的精细控制。通过使用核受体PPARγ突出了该系统在筛选分子胶方面的普遍适用性,PPARγ通过变构PPI稳定机制招募共调节因子。因此,凝聚物环境提供了一个独特的致密分子环境,以增强弱PPI,并在化学上通向细胞内部的分子环境中对小分子稳定进行后续评估。