Chauhan Vinita, Chaudhary Dilip, Pathak Uma, Saxena Nandita, Dhaked Ram Kumar
Biotechnology Division, ‡Synthetic Chemistry Division, and §Pharmacology and Toxicology Division, Defence Research and Development Establishment , Gwalior 474002, India.
J Med Chem. 2016 Dec 8;59(23):10763-10773. doi: 10.1021/acs.jmedchem.6b01517. Epub 2016 Nov 29.
Shiga toxin (Stx), a category B biothreat agent, is a ribosome inactivating protein and toxic to human and animals. Here, we designed and synthesized small molecules that block the active site of the Stx A subunit. On the basis of binding energy, 20 molecules were selected for synthesis and evaluation. These molecules were primarily screened using fluorescence-based thermal shift assay and in vitro in Vero cells. Among 32 molecules (including 12 reported), six molecules offered protection with IC of 2.60-23.90 μM. 4-Nitro-N-[2-(2-phenylsulfanylethylamino)ethyl]benzamide hydrochloride is the most potent inhibitor with IC at 7.96 μM and selectivity index of 22.23 and is better than any known small molecule inhibitor of Stx. Preincubation with Stx offered full protection against Shiga toxin in mice. Surface plasmon resonance assay further confirmed that these molecules bind specifically to Stx A subunit. Further optimization is continued to identify a potential candidate which will be in vivo effective.
志贺毒素(Stx)是一种B类生物威胁因子,是一种核糖体失活蛋白,对人和动物有毒性。在此,我们设计并合成了能阻断Stx A亚基活性位点的小分子。基于结合能,选择了20个分子进行合成和评估。这些分子主要通过基于荧光的热位移分析和在Vero细胞中的体外实验进行筛选。在32个分子(包括12个已报道的分子)中,有6个分子提供了保护作用,其半数抑制浓度(IC)为2.60 - 23.90 μM。4-硝基-N-[2-(2-苯硫基乙氨基)乙基]苯甲酰胺盐酸盐是最有效的抑制剂,IC为7.96 μM,选择性指数为22.23,优于任何已知的Stx小分子抑制剂。与Stx预孵育可使小鼠完全免受志贺毒素的侵害。表面等离子体共振分析进一步证实这些分子与Stx A亚基特异性结合。目前仍在继续进行进一步优化,以确定一种在体内有效的潜在候选物。