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Ring complexes of S-nitrosothiols with Cu+: a density functional theory studyt

机译:S-亚硝基硫醇与Cu +的环配合物:密度泛函理论研究

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The density functional theory (DFT) method B3P86/6-311+G(2df,p) has been employed to investigate the complexes formed upon interaction of Cu+ with nitrosylated cysteine (CysNO) and its decarboxylated (H2NCH2CH2SNO) and deaminated (HOOCCH2CH2SNO) derivatives. Optimized structures, relative enthalpies and relative free energies have been calculated and compared. In addition, the effects of binding an H2O molecule to the Cu+ centre in the resulting complexes have also been considered. It is found that the most stable complexes are formed when Cu+ coordinates to the S-nitrosothiol via S of the -SNO group. This results in dramatic lengthenings of the S-N bond with concomitant shortening of the N-O bond. In contrast, when Cu+ coordinates via the nitrogen of the -SNO group, a shortening of the S-N bond with lengthening of the N-O bond is observed. These effects are tempered by the electron donating ability of other functional groups also coordinated with the Cu+ centre in the complexes and on the coordination state of the Cu+ ion.
机译:密度泛函理论(DFT)方法B3P86 / 6-311 + G(2df,p)已用于研究Cu +与亚硝化半胱氨酸(CysNO)及其脱羧化(H2NCH2CH2SNO)和脱氨化(HOOCCH2CH2SNO)衍生物相互作用形成的配合物。计算并比较了优化的结构,相对焓和相对自由能。此外,还考虑了将H2O分子与所得络合物中的Cu +中心结合的作用。发现当Cu +通过-SNO基团的S与S-亚硝基硫醇配位时,形成最稳定的配合物。这导致S-N键显着延长,同时N-O键缩短。相反,当Cu +通过-SNO基团的氮进行配位时,观察到S-N键的缩短和N-O键的延长。这些作用因其他官能团的电子给体能力而减弱,这些官能团也与配合物中的Cu +中心和Cu +离子的配位态相协调。

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