Interdisciplinary Biomedical Research Centre, School of Science and Technology, Nottingham Trent University, Clifton Lane, Nottingham NG11 8NS, UK.
Dipartimento di Chimica, Università di Firenze, via della Lastruccia 3, 50019 Sesto Fiorentino, Italy.
Molecules. 2022 Sep 9;27(18):5846. doi: 10.3390/molecules27185846.
Complexes of Cu(d) with proline may be considered a simple model to address the structural flexibility and electronic properties of copper metalloproteins. To discuss optical electronic spectra and infrared spectral responses, we use quantum chemistry applied to model systems prepared under different geometries and degree of hydration. A comparison of experimental data with calculations indicates that first explicit neighbor water clustering next to the Cu(d) complex is critical for a correct description of the electronic properties of this system. We deduce that the moderately hydrated conformer is the main structural form of the complex in water. Further, we suggest that the antisymmetric stretching mode of the carbonyl moieties of the conformer is dominant in the spectrally broadened infrared resonance at 1605 cm, where inhomogeneity of the transition at the blue side can be ascribed to a continuum of less optimal interactions with the solvent. Extracted structural properties and hydration features provide information on the structural flexibility/plasticity specific to Cu(d) systems in correlation with the electronic behavior upon photoexcitation. We discuss the role and the nature of the axial ligand in bio-copper structural ambivalence and reactivity.
铜(Ⅱ)与脯氨酸的配合物可以被认为是一个简单的模型,用于研究铜金属蛋白的结构灵活性和电子性质。为了讨论光电子光谱和红外光谱响应,我们使用量子化学方法来模拟不同几何形状和不同水合程度下的模型体系。实验数据与计算结果的比较表明,紧邻 Cu(Ⅱ)配合物的第一配位层的明确相邻水分子簇对于正确描述该体系的电子性质至关重要。我们推断,适度水合的构象是该配合物在水中的主要结构形式。此外,我们还提出,在 1605 cm 处光谱展宽的红外共振中,构象的羰基部分的反对称伸缩模式占主导地位,其中在蓝移处的跃迁的非均匀性可以归因于与溶剂的一系列不太理想的相互作用的连续体。提取的结构特性和水合特征提供了与光激发下电子行为相关的铜(Ⅱ)体系结构灵活性/可塑性的信息。我们讨论了轴向配体在生物铜结构两重性和反应性中的作用和性质。