Quiroga Diego, Becerra Lili Dahiana, Coy-Barrera Ericsson
Bioorganic Chemistry Laboratory, Facultad de Ciencias Básicas y Aplicadas, Universidad Militar Nueva Granada, Campus Nueva Granada, 250247 Cajicá, Colombia.
ACS Omega. 2019 Aug 12;4(9):13710-13720. doi: 10.1021/acsomega.9b01098. eCollection 2019 Aug 27.
A high-yielding, green, and fast synthesis of alkyl 2-substituted {[(alkylsulfanyl)carbonothioyl]amino}acetate-type compounds is described. The one-pot, three-component condensation of alkyl 2-aminoesters, carbon disulfide, and electron-deficient olefins was the key reaction to be developed. The products were obtained easily and efficiently, with good overall yields after two steps (79-91%), employing short reaction times, without the use of a catalyst, and ultrasonic irradiation in water. This procedure was exploited to produce antifungals against the phytopathogenic fungus . Some synthesized compounds exhibited good performance as mycelial growth inhibitors (IC < 80 μM). Structural and antifungal datasets were integrated to explore the comprehensive three-dimensional quantitative structure-activity relationship (3D-QSAR) using comparative molecular field analysis (CoMFA) and explain the observed activity. This integration resulted in an excellent CoMFA model ( = 0.812; = 0.771) after substructure-based alignment. According to this model, synthesized compounds possessing steric bulky electron-withdrawing groups in the dithiocarbamate moiety can be considered as promising inhibitors.
本文描述了一种高产、绿色且快速合成2-取代烷基{[(烷基硫基)碳硫酰基]氨基}乙酸酯类化合物的方法。2-氨基酯、二硫化碳和缺电子烯烃的一锅三组分缩合反应是关键反应。产物易于高效获得,两步反应后总收率良好(79 - 91%),反应时间短,无需使用催化剂,且在水中进行超声辐照。该方法用于制备抗植物病原真菌的抗真菌剂。一些合成化合物表现出良好的菌丝生长抑制性能(IC < 80 μM)。整合结构和抗真菌数据集,使用比较分子场分析(CoMFA)探索全面的三维定量构效关系(3D - QSAR)并解释观察到的活性。基于子结构比对后,该整合产生了一个优秀的CoMFA模型( = 0.812; = 0.771)。根据该模型,在二硫代氨基甲酸盐部分具有空间位阻大的吸电子基团的合成化合物可被视为有前景的抑制剂。