Swiss Federal Institute of Technology (ETH), Department of Chemistry and Applied Biosciences, Vladimir-Prelog-Weg 4, CH-8093, Zurich, Switzerland.
Milano Chemometrics & QSAR Research Group, Department of Earth and Environmental Sciences, University of Milano-Bicocca, IT-20126, Milano, Italy.
Sci Rep. 2018 Nov 7;8(1):16469. doi: 10.1038/s41598-018-34677-0.
The discovery of novel ligand chemotypes allows to explore uncharted regions in chemical space, thereby potentially improving synthetic accessibility, potency, and the drug-likeness of molecules. Here, we demonstrate the scaffold-hopping ability of the new Weighted Holistic Atom Localization and Entity Shape (WHALES) molecular descriptors compared to seven state-of-the-art molecular representations on 30,000 compounds and 182 biological targets. In a prospective application, we apply WHALES to the discovery of novel retinoid X receptor (RXR) modulators. WHALES descriptors identified four agonists with innovative molecular scaffolds, populating uncharted regions of the chemical space. One of the agonists, possessing a rare non-acidic chemotype, revealed high selectivity on 12 nuclear receptors and comparable efficacy as bexarotene on induction of ATP-binding cassette transporter A1, angiopoietin like protein 4 and apolipoprotein E. The outcome of this research supports WHALES as an innovative tool to explore novel regions of the chemical space and to detect novel bioactive chemotypes by straightforward similarity searching.
新型配体化学类型的发现可以探索化学空间中的未知区域,从而有可能提高分子的合成可及性、效力和类药性。在这里,我们展示了新的加权整体原子定位和实体形状 (WHALES) 分子描述符的支架跳跃能力,与 30000 种化合物和 182 个生物靶标上的七种最先进的分子表示方法进行了比较。在一项前瞻性应用中,我们将 WHALES 应用于新型视黄醇 X 受体 (RXR) 调节剂的发现。WHALES 描述符确定了四个具有创新分子支架的激动剂,填充了化学空间的未知区域。其中一个激动剂具有罕见的非酸性化学类型,对 12 种核受体表现出高选择性,并与 bexarotene 相当,可诱导 ATP 结合盒转运蛋白 A1、血管生成素样蛋白 4 和载脂蛋白 E 的表达。这项研究的结果支持 WHALES 作为一种创新工具,通过直接相似性搜索来探索化学空间的新区域并检测新的生物活性化学类型。