Research & Early Development, Bristol Myers Squibb Company, P.O. Box 4000, Princeton, NJ 08543, United States.
Research & Early Development, Bristol Myers Squibb Company, P.O. Box 4000, Princeton, NJ 08543, United States.
Bioorg Med Chem. 2024 Mar 1;101:117638. doi: 10.1016/j.bmc.2024.117638. Epub 2024 Feb 11.
As a result of our continued efforts to pursue Gal-3 inhibitors that could be used to fully evaluate the potential of Gal-3 as a therapeutic target, two novel series of benzothiazole derived monosaccharides as potent (against both human and mouse Gal-3) and orally bioavailable Gal-3 inhibitors, represented by 4 and 5, respectively, were identified. These discoveries were made based on proposals that the benzothiazole sulfur atom could interact with the carbonyl oxygen of G182/G196 in h/mGal-3, and that the anomeric triazole moiety could be modified into an N-methyl carboxamide functionality. The interaction between the benzothiazole sulfur and the carbonyl oxygen of G196 in mGal-3 was confirmed by an X-ray co-crystal structure of early lead 9, providing a rare example of using a S···O binding interaction for drug design. It was found that for both the series, methylation of 3-OH in the monosaccharides caused no loss in h & mGal-3 potencies but significantly improved permeability of the molecules.
由于我们持续努力寻找可全面评估 Gal-3 作为治疗靶点潜力的 Gal-3 抑制剂,因此发现了两个新的苯并噻唑衍生单糖系列,分别为 4 和 5,它们都是强效(对人源和鼠源 Gal-3 均有效)且可口服生物利用的 Gal-3 抑制剂。这些发现基于以下假设:苯并噻唑的硫原子可以与 h/mGal-3 中的 G182/G196 的羰基氧相互作用,并且端基的三唑部分可以修饰成 N-甲基羧酰胺官能团。通过早期先导化合物 9 的 X 射线共晶结构证实了苯并噻唑的硫与 mGal-3 中 G196 的羰基氧之间的相互作用,为药物设计中使用 S···O 结合相互作用提供了一个罕见的例子。结果发现,对于这两个系列,单糖 3-OH 的甲基化不会导致对 h & mGal-3 的效力丧失,但会显著提高分子的通透性。