Discovery Chemistry, Therapeutics Discovery, Janssen Research & Development, Janssen Pharmaceutica NV, Turnhoutseweg 30, B-2340, Beerse, Belgium; KU Leuven, Department of Neurosciences, Leuven Institute for Neuroscience and Disease, (LIND), Leuven, Belgium.
VIB Center for Brain and Disease Research, Leuven, Belgium.
Eur J Med Chem. 2023 Nov 15;260:115725. doi: 10.1016/j.ejmech.2023.115725. Epub 2023 Aug 19.
This paper describes the rational design, synthesis, structure-activity relationship (SAR), and biological profile of presenilin-1 (PSEN-1) complex selective γ-secretase inhibitors, assessed for selectivity using a unique set of four γ-secretase subtype complexes. A set of known PSEN-1 selective γ-Secretase inhibitors (GSIs) was analyzed to understand the pharmacophoric features required for selective inhibition. Conformational modeling suggests that a characteristic 'U' shape orientation between aromatic sulfone/sulfonamide and aryl ring is crucial for PSEN-1 selectivity and potency. Using these insights, a series of brain-penetrant 2-azabicyclo[2,2,2]octane sulfonamides was devised and synthesized as a new class of PSEN-1 selective inhibitors. Compounds 13c and 13k displayed high potency towards PSEN1-APH1B complex but moderate selectivity towards PSEN2 complexes. However, compound (+)-13b displayed low nanomolar potency towards the PSEN1-APH1B complex, little (∼4-fold) selectivity towards PSEN1-APH1A, and high selectivity (>350-fold) versus PSEN2 complexes. Excellent brain penetration, no significant CYP inhibition, or cardiotoxicity, good solubility, and permeability make (+)-13b an excellent candidate for further lead optimization.
本文描述了早老素 1(PSEN-1)复合物选择性 γ-分泌酶抑制剂的合理设计、合成、构效关系(SAR)和生物学特征,通过独特的四组 γ-分泌酶亚型复合物评估了其选择性。分析了一组已知的 PSEN-1 选择性 γ-分泌酶抑制剂(GSIs),以了解选择性抑制所需的药效团特征。构象建模表明,芳基砜/磺酰胺和芳环之间的特征“U”形取向对于 PSEN-1 选择性和效力至关重要。利用这些见解,设计并合成了一系列具有脑渗透性的 2-氮杂双环[2,2,2]辛烷磺酰胺,作为 PSEN-1 选择性抑制剂的新类别。化合物 13c 和 13k 对 PSEN1-APH1B 复合物表现出高活性,但对 PSEN2 复合物的选择性中等。然而,化合物 (+)-13b 对 PSEN1-APH1B 复合物表现出低纳摩尔效力,对 PSEN1-APH1A 的选择性(约 4 倍)较低,对 PSEN2 复合物的选择性(>350 倍)较高。良好的脑渗透性、对 CYP 无显著抑制作用或心脏毒性、良好的溶解度和渗透性使 (+)-13b 成为进一步优化先导化合物的优秀候选物。