Dick Benjamin L, Patel Ashay, Cohen Seth M
Department of Chemistry and Biochemistry , University of California San Diego , 9500 Gilman Drive, La Jolla , CA 92093-0358 , USA . Email:
Chem Sci. 2020 Jun 17;11(26):6907-6914. doi: 10.1039/d0sc02717k. eCollection 2020 Jul 14.
Bioisostere replacement is a core concept in modern medicinal chemistry and has proven an invaluable strategy to address pharmacodynamic and pharmacokinetic limitations of therapeutics. The success of bioisostere replacement is often dependent on the scaffold that is being modified (, "context dependence"). The application of bioisostere replacement to a picolinic acid fragment was recently demonstrated as a means to expand a library of metal-binding pharmacophores (MBPs) to modulate their physicochemical properties, while retaining their metal binding and metalloenzyme inhibitory activity. Here, metal binding isosteres (MBIs) with different nitrogen-containing heteroarenes is explored. This resulted in a number of new MBIs that were evaluated for their physicochemical properties and metal binding features. It was observed that the coordination behavior of an MBI is dependent on the identity and arrangement of the heteroatoms within each heteroarene. To further understand the observed coordination chemistry trends, density functional theory (DFT) calculations were performed. Theory indicates that preferences in coordination geometry are largely determined by the electronic character of the heteroarene scaffold. These results provide important insights into the development of novel MBI scaffolds that can serve to broaden the scope of scaffolds for metalloenzyme inhibitor development.
生物电子等排体替换是现代药物化学中的一个核心概念,并且已被证明是解决治疗药物的药效学和药代动力学局限性的一种非常有价值的策略。生物电子等排体替换的成功通常取决于所修饰的骨架(即“背景依赖性”)。最近,生物电子等排体替换在吡啶甲酸片段上的应用被证明是一种扩展金属结合药效团(MBP)库的方法,以调节其物理化学性质,同时保留其金属结合和金属酶抑制活性。在此,探索了具有不同含氮杂芳烃的金属结合等排体(MBI)。这产生了许多新的MBI,并对其物理化学性质和金属结合特性进行了评估。观察到MBI的配位行为取决于每个杂芳烃中杂原子的种类和排列。为了进一步理解观察到的配位化学趋势,进行了密度泛函理论(DFT)计算。理论表明,配位几何结构的偏好很大程度上由杂芳烃骨架的电子特性决定。这些结果为新型MBI骨架的开发提供了重要见解,可用于拓宽金属酶抑制剂开发的骨架范围。