Department of Chemistry, Organic Chemistry Section, Johannes Gutenberg-Universität, Duesbergweg 10-14, 55128 Mainz, Germany.
Institute of Pharmaceutical and Biomedical Sciences, Johannes Gutenberg-Universität, Staudingerweg 5, 55128 Mainz, Germany.
Molecules. 2020 Apr 28;25(9):2064. doi: 10.3390/molecules25092064.
The facile synthesis and detailed investigation of a class of highly potent protease inhibitors based on 1,4-naphthoquinones with a dipeptidic recognition motif (HN-l-Phe-l-Leu-OR) in the 2-position and an electron-withdrawing group (EWG) in the 3-position is presented. One of the compound representatives, namely the acid with EWG = CN and with R = H proved to be a highly potent rhodesain inhibitor with nanomolar affinity. The respective benzyl ester (R = Bn) was found to be hydrolyzed by the target enzyme itself yielding the free acid. Detailed kinetic and mass spectrometry studies revealed a reversible covalent binding mode. Theoretical calculations with different density functionals (DFT) as well as wavefunction-based approaches were performed to elucidate the mode of action.
呈现了一类基于 1,4-萘醌的高活性蛋白酶抑制剂的简便合成和详细研究,这些抑制剂在 2 位具有二肽识别基序(HN-l-Phe-l-Leu-OR),在 3 位具有一个吸电子基团(EWG)。其中一种化合物代表,即 EWG = CN 且 R = H 的酸,被证明是一种具有纳摩尔亲和力的高度有效的 rhodesain 抑制剂。相应的苄酯(R = Bn)被发现被靶酶自身水解,生成游离酸。详细的动力学和质谱研究揭示了一种可逆的共价结合模式。使用不同密度泛函(DFT)以及波函数方法进行了理论计算,以阐明作用模式。