Belani Farshid, Mehrabi Maryam, Adibi Hadi, Mehrabi Masomeh, Khodarahmi Reza
Department of biology, Faculty of Sciences, Razi University, Kermanshah, Iran.
Pharmaceutical Sciences Research Center, Health Institute, Kermanshah University of Medical Sciences, Kermanshah, Iran.
Curr Protein Pept Sci. 2025;26(3):226-240. doi: 10.2174/0113892037332139241008054602.
Sulfonamides are widely used carbonic anhydrase inhibitors (CAIs) in clinical settings, however, their nonspecific inhibition of multiple carbonic anhydrase isoforms can lead to reduced efficacy and side effects. This study aimed to develop sulfanilamide-diazo derivatives incorporating benzoic acid moieties as novel inhibitors of hCA II activity to reduce side effects and enhance selectivity for different CA isozymes.
We investigated the interaction between these derivatives and the hCA II isozyme via various spectroscopic and docking methods.
The kinetic data demonstrates that compound 1 (C1) and compound 2 (C2) share a similar inhibitory strength against hCA II, effectively inhibiting its esterase activity through a noncompetitive mechanism with Ki values at low micromolar levels. Fluorescence measurements indicated that the synthesized compounds suppressed the inherent fluorescence of hCA II via a static quenching process, with each compound showing a singular binding site within the enzyme. Thermodynamic evidences highlight the significance of van der Waals interactions and hydrogen bonding in the binding process. The results of molecular docking indicated that both C1 and C2 effectively obstruct the entrance to hCA II's active site, with no significant differences in their binding conformations.
While C1 and C2 exhibit CA inhibitory potency lower than that of sulfonamide compounds, this study offers valuable insights that could pave the way for the development of a promising scaffold for designing new carbonic anhydrase inhibitors.
磺胺类药物是临床环境中广泛使用的碳酸酐酶抑制剂(CAIs),然而,它们对多种碳酸酐酶同工型的非特异性抑制会导致疗效降低和副作用。本研究旨在开发含有苯甲酸部分的磺胺重氮衍生物,作为hCA II活性的新型抑制剂,以减少副作用并提高对不同CA同工酶的选择性。
我们通过各种光谱和对接方法研究了这些衍生物与hCA II同工酶之间的相互作用。
动力学数据表明,化合物1(C1)和化合物2(C2)对hCA II具有相似的抑制强度,通过非竞争性机制有效抑制其酯酶活性,Ki值处于低微摩尔水平。荧光测量表明,合成的化合物通过静态猝灭过程抑制了hCA II的固有荧光,每种化合物在酶内显示出单一的结合位点。热力学证据突出了范德华相互作用和氢键在结合过程中的重要性。分子对接结果表明,C1和C2均有效阻碍了hCA II活性位点的入口,它们的结合构象没有显著差异。
虽然C1和C2表现出的CA抑制效力低于磺胺类化合物,但本研究提供了有价值的见解,可为设计新型碳酸酐酶抑制剂的有前景支架的开发铺平道路。