Chemical Biology and Therapeutics Science, Broad Institute of MIT and Harvard, 415 Main Street, Cambridge, Massachusetts 02142, United States.
Department of Chemistry and Chemical Biology, Harvard University, 12 Oxford Street, Cambridge, Massachusetts 02138, United States.
J Am Chem Soc. 2023 Oct 25;145(42):23281-23291. doi: 10.1021/jacs.3c08307. Epub 2023 Oct 10.
The hallmark of a molecular glue is its ability to induce cooperative protein-protein interactions, leading to the formation of a ternary complex, despite weaker binding toward one or both individual proteins. Notably, the extent of cooperativity distinguishes molecular glues from bifunctional compounds, which constitute a second class of inducers of protein-protein interactions. However, apart from serendipitous discovery, there have been limited rational screening strategies for the high cooperativity exhibited by molecular glues. Here, we propose a binding-based screen of DNA-barcoded compounds on a target protein in the presence or absence of a presenter protein, using the "presenter ratio", the ratio of ternary enrichment to binary enrichment, as a predictive measure of cooperativity. Through this approach, we identified a range of cooperative, noncooperative, and uncooperative compounds in a single DNA-encoded library screen with bromodomain containing protein (BRD)9 and the VHL-elongin C-elongin B (VCB) complex. Our most cooperative hit compound, , exhibits micromolar binding affinity to BRD9 but nanomolar affinity for the ternary complex with BRD9 and VCB, with cooperativity comparable to classical molecular glues. This approach may enable the rational discovery of molecular glues for preselected proteins and thus facilitate the transition to a new paradigm of small-molecule therapeutics.
分子胶的标志是其诱导蛋白质-蛋白质相互作用的能力,导致形成三元复合物,尽管对一个或两个单个蛋白质的结合较弱。值得注意的是,协同程度将分子胶与双功能化合物区分开来,后者构成蛋白质-蛋白质相互作用诱导剂的第二类。然而,除了偶然发现外,对于分子胶表现出的高协同性,合理的筛选策略有限。在这里,我们提出了一种在存在或不存在呈现蛋白的情况下,针对靶蛋白上的 DNA 编码化合物进行基于结合的筛选方法,使用“呈现比”(三元富集与二元富集的比率)作为协同性的预测指标。通过这种方法,我们在 BRD9 和 VHL-elongin C-elongin B(VCB)复合物的单个 DNA 编码文库筛选中鉴定了一系列协同、非协同和非协同化合物。我们最具协同性的命中化合物 ,对 BRD9 的结合亲和力为微摩尔级,但对 BRD9 和 VCB 的三元复合物的亲和力为纳摩尔级,协同性可与经典分子胶相媲美。这种方法可以为预选蛋白质合理地发现分子胶,从而促进向小分子治疗的新范式转变。