Department of Pure and Industrial Chemistry, University of Nigeria, Nsukka 410001, Nigeria.
Department of Chemistry and Biochemistry, University of South Carolina, Columbia, SC 29208, USA.
Molecules. 2022 Oct 31;27(21):7400. doi: 10.3390/molecules27217400.
Synthesis of sulfonamide through an indirect method that avoids contamination of the product with no need for purification has been carried out using the indirect process. Here, we report the synthesis of a novel sulfonamide compound, ({4-nitrophenyl}sulfonyl)tryptophan (DNSPA) from 4-nitrobenzenesulphonylchloride and L-tryptophan precursors. The slow evaporation method was used to form single crystals of the named compound from methanolic solution. The compound was characterized by X-ray crystallographic analysis and spectroscopic methods (NMR, IR, mass spectrometry, and UV-vis). The sulfonamide N-H NMR signal at 8.07-8.09 ppm and S-N stretching vibration at 931 cm indicate the formation of the target compound. The compound crystallized in the monoclinic crystal system and P2 space group with four molecules of the compound in the asymmetric unit. Molecular aggregation in the crystal structure revealed a 12-molecule aggregate synthon sustained by O-H⋯O hydrogen bonds and stabilised by N-H⋯O intermolecular contacts. Experimental studies were complemented by DFT calculations at the B3LYP/6-311++G(d,p) level of theory. The computed structural and spectroscopic data are in good agreement with those obtained experimentally. The energies of interactions between the units making up the molecule were calculated. Molecular docking studies showed that DNSPA has a binding energy of -6.37 kcal/mol for DNA gyrase (5MMN) and -6.35 kcal/mol for COVID-19 main protease (6LU7).
采用间接法合成磺胺,避免了产品受到污染,无需进行纯化。在这里,我们报告了一种新型磺胺化合物的合成,即从 4-硝基苯磺酰氯和 L-色氨酸前体合成(4-硝基苯基)磺酰基色氨酸(DNSPA)。使用缓慢蒸发法从甲醇溶液中形成该命名化合物的单晶。通过 X 射线晶体学分析和光谱方法(NMR、IR、质谱和 UV-vis)对化合物进行了表征。磺胺 N-H NMR 信号在 8.07-8.09 ppm 处,S-N 伸缩振动在 931 cm 处表明目标化合物的形成。该化合物在单斜晶系和 P2 空间群中结晶,不对称单元中有四个化合物分子。晶体结构中的分子聚集揭示了一个由 O-H⋯O 氢键支撑的 12 个分子聚合元,由 N-H⋯O 分子间接触稳定。实验研究补充了在 B3LYP/6-311++G(d,p)理论水平的 DFT 计算。计算得到的结构和光谱数据与实验获得的数据吻合良好。计算了构成分子的各单元之间相互作用的能量。分子对接研究表明,DNSPA 与 DNA 拓扑异构酶(5MMN)的结合能为-6.37 kcal/mol,与 COVID-19 主要蛋白酶(6LU7)的结合能为-6.35 kcal/mol。