Department of Chemistry and Immunology, The Skaggs Institute for Chemical Biology, Worm Institute of Research and Medicine (WIRM), The Scripps Research Institute, La Jolla, CA 92037, USA.
Department of Bacteriology, University of Wisconsin, 1550 Linden Drive, Madison, WI 53706, USA.
Int J Mol Sci. 2023 Feb 21;24(5):4303. doi: 10.3390/ijms24054303.
Targeting the botulinum neurotoxin light chain (LC) metalloprotease using small-molecule metal chelate inhibitors is a promising approach to counter the effects of the lethal toxin. However, to overcome the pitfalls associated with simple reversible metal chelate inhibitors, it is crucial to investigate alternative scaffolds/strategies. In conjunction with Atomwise Inc., in silico and in vitro screenings were conducted, yielding a number of leads, including a novel 9-hydroxy-4-pyrido [1,2-a]pyrimidin-4-one (PPO) scaffold. From this structure, an additional series of 43 derivatives were synthesized and tested, resulting in a lead candidate with a of 150 nM in a BoNT/A LC enzyme assay and 17 µM in a motor neuron cell-based assay. These data combined with structure-activity relationship (SAR) analysis and docking led to a bifunctional design strategy, which we termed "catch and anchor" for the covalent inhibition of BoNT/A LC. Kinetic evaluation was conducted on structures prepared from this catch and anchor campaign, providing / values, and rationale for inhibition seen. Covalent modification was validated through additional assays, including an FRET endpoint assay, mass spectrometry, and exhaustive enzyme dialysis. The data presented support the PPO scaffold as a novel candidate for targeted covalent inhibition of BoNT/A LC.
使用小分子金属螯合物抑制剂靶向肉毒神经毒素轻链(LC)金属蛋白酶是一种有前途的方法,可以对抗致命毒素的影响。然而,为了克服简单可逆金属螯合物抑制剂相关的缺陷,研究替代支架/策略至关重要。与 Atomwise Inc. 合作,进行了计算机筛选和体外筛选,得到了一些先导化合物,包括一种新型的 9-羟基-4-吡啶并[1,2-a]嘧啶-4-酮(PPO)支架。从该结构出发,合成并测试了另外 43 个衍生物,得到了一个先导化合物,在 BoNT/A LC 酶测定中的 IC50 为 150 nM,在运动神经元细胞测定中的 IC50 为 17 µM。这些数据结合构效关系(SAR)分析和对接,导致了一种双功能设计策略,我们称之为“捕获和锚定”,用于共价抑制 BoNT/A LC。对从这次捕获和锚定活动中制备的结构进行了动力学评估,提供了抑制的 / 值和原理。通过其他测定,包括 FRET 终点测定、质谱和酶透析的穷尽,验证了共价修饰。所呈现的数据支持 PPO 支架作为靶向共价抑制 BoNT/A LC 的新型候选物。