首页> 外文期刊>Carbohydrate research >A combined theoretical and spectroscopic study of 4,6-di-O-acetyl-2,3- dideoxy-d-erythro-hex-2-enopyranosyl sulfamide: A novel glycosyl carbonic anhydrase IX inhibitor
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A combined theoretical and spectroscopic study of 4,6-di-O-acetyl-2,3- dideoxy-d-erythro-hex-2-enopyranosyl sulfamide: A novel glycosyl carbonic anhydrase IX inhibitor

机译:结合理论和光谱研究4,6-二-O-乙酰基-2,3-二脱氧-d-赤型-己二-2-烯吡喃糖基磺酰胺:一种新型糖基碳酸酐酶IX抑制剂

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摘要

The novel 4,6-di-O-acetyl-2,3-dideoxy-d-erythro-hex-2-enopyranosyl sulfamide, which exhibits selectivity for inhibiting isoform IX of carbonic anhydrase as overexpressed in many tumors, has been investigated from a combined theoretical and spectroscopic point of view. The conformational study of the compound shows that the α-anomeric form is more stable than the β-anomeric form from a thermodynamic point of view after including solvent effects. This fact suggests that the synthesis reaction could take place mainly under thermodynamic control as the main experimental product is the α-anomeric form of the sulfamide. Calculated α/β ratio is about 95:5, in excellent agreement with experimental data. Optimized geometries of the α-anomeric form agree quite well with crystallographic data. The inclusion of a solvent has negligible effects on the conformations. A detailed analysis of some geometric parameters shed light into the conformational behavior of the sulfamide in terms of both exo- and endo-anomeric effects and antiperiplanar relationships. Natural bond orbital calculations confirm those findings. Several intramolecular hydrogen bonds, characterized through the Atoms-in-Molecules theory, were found in the stable conformers. They, however, seem to play no relevant role in determining the relative stability of α conformers with respect to the β ones. Calculated ~1H and ~(13)C NMR chemical shifts support previous findings concerning configuration and conformation assignments of the title sulfamide. The IR spectrum of the compound is recorded and reported for the first time and the assignment of some of the most important bands is accomplished with the aid of calculated harmonic vibrational frequencies.
机译:研究人员从一种新型的4,6-二-O-乙酰基-2,3-二脱氧-d-赤藓基-己-2-氨基吡喃糖基硫酰胺中表现出了抑制碳酸酐酶同工型IX的选择性,因为该异构体在许多肿瘤中都过表达。结合了理论和光谱的观点。该化合物的构象研究表明,从热力学观点来看,包括溶剂效应后,α-异头异构体形式比β-异头异构体形式更稳定。这一事实表明,合成反应主要在热力学控制下发生,因为主要的实验产物是磺酰胺的α-异头异构体形式。计算出的α/β比约为95:5,与实验数据非常吻合。优化的α-异头异构体的几何形状与晶体学数据非常吻合。包含溶剂对构象的影响可忽略不计。对某些几何参数的详细分析揭示了硫酰胺在构象异和异构作用和反平面关系方面的构象行为。自然键轨道计算证实了这些发现。在稳定构象异构体中发现了几个通过分子内原子理论表征的分子内氢键。然而,它们似乎在确定α构象体相对于β构象体的相对稳定性方面不起作用。计算的〜1H和〜(13)C NMR化学位移支持有关标题磺酰胺构型和构象分配的先前发现。首次记录并报告了该化合物的红外光谱,并借助计算出的谐波振动频率完成了一些最重要谱带的分配。

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