Kijewska Monika, Sharfalddin Abeer A, Jaremko Łukasz, Cal Marta, Setner Bartosz, Siczek Miłosz, Stefanowicz Piotr, Hussien Mostafa A, Emwas Abdul-Hamid, Jaremko Mariusz
Faculty of Chemistry, University of Wrocław, Wrocław, Poland.
Department of Chemistry, Faculty of Sciences, King Abdulaziz University, Jeddah, Saudi Arabia.
Front Chem. 2021 Apr 15;9:662533. doi: 10.3389/fchem.2021.662533. eCollection 2021.
The sulfonic esters of N-oxyimides are a group of compounds with a wide range of biological activities, as well as a unique reactivity toward amines. They undergo this reaction with primary amines and other nucleophilic reagents according to a Lossen-like rearrangement. The reaction is initiated by nucleophilic attack on a carbonyl group in the succinimide ring followed by isocyanate formation, which next interacts with another nucleophile molecule forming an addition product (e.g., ureido or urethane derivative). However, the secondary amines are also susceptible to other reactions leading to products containing the maleimide ring formed by sulphonic acid elimination. In the case of tertiary amines, this reaction is predominant. To explain the phenomenon of the reactivity of the N- oxyimides toward different types of amines, we employed various spectroscopic and X-ray approaches as well as DFT calculation. Results suggest that the basicity of the amine used for the reaction plays a crucial role in the reaction mechanism that eventually dominates the entire chemical process. Moreover, we applied molecular docking to investigate the ability of the products to act as serine protease inhibitors using human leukocyte elastase (HLE).
N-氧代酰亚胺的磺酸酯是一类具有广泛生物活性的化合物,并且对胺具有独特的反应活性。它们根据类似洛森重排的反应与伯胺和其他亲核试剂发生这种反应。该反应由亲核试剂对琥珀酰亚胺环中羰基的进攻引发,随后形成异氰酸酯,异氰酸酯接着与另一个亲核分子相互作用形成加成产物(例如脲基或氨基甲酸酯衍生物)。然而,仲胺也容易发生其他反应,导致生成通过磺酸消除形成的含有马来酰亚胺环的产物。在叔胺的情况下,这种反应占主导。为了解释N-氧代酰亚胺对不同类型胺的反应活性现象,我们采用了各种光谱和X射线方法以及密度泛函理论计算。结果表明,用于反应的胺的碱性在最终主导整个化学过程的反应机制中起着关键作用。此外,我们应用分子对接来研究产物作为使用人白细胞弹性蛋白酶(HLE)的丝氨酸蛋白酶抑制剂的能力。