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Study of solid/liquid and solid/gas interfaces in Cu-isoleucine complex by surface X-ray diffraction

机译:用表面X射线衍射研究Cu-异亮氨酸配合物中的固/液和固/气界面

摘要

The enzymes could be understood like structures formed by amino acids bonded with metals, which act as active sites. The research on the coordination of metal-amino acid complexes will bring light on the behavior of metal enzymes, due to the close relation existing between the atomic structure and the functionality. The Cu-isoleucine bond is considered as a good model system to attain a better insight into the characteristics of naturally occurring copper metalloproteins. The surface structure of metal-amino acid complex could be considered as a more realistic model for real systems under biologic working conditions, since the molecular packing is decreased. In the surface, the structural constrains are reduced, keeping the structural capability of surface complex to change as a function of the surrounding environment. In this work, we present a surface X-ray diffraction study on Cu-isoleucine complex under different ambient conditions. Cu(Ile)2 crystals of about 5 mm × 5 mm × 1 mm have been growth, by seeding method in a supersaturated solution, presenting a surface of high quality. The sample for the surface diffraction study was mounted on a cell specially designed for solid/liquid or solid/gas interface analysis. The Cu-isoleucine crystal was measured under a protective dry N2 gas flow and in contact with a saturated metal amino acid solution. The bulk and the surface signals were compared, showing different atomic structures. In both cases, from surface diffraction data, it is observed that the atomic structure of the top layer undergoes a clear structural deformation. A non-uniform surface relaxation is observed producing an inhomogeneous displacement of the surface atoms towards the surface normal. © 2012 Elsevier B.V. All rights reserved.
机译:可以理解这些酶就像是由与金属结合的氨基酸形成的结构一样,这些金属充当活性位点。金属-氨基酸配合物配位的研究将揭示金属酶的行为,因为原子结构和功能之间存在着密切的关系。 Cu-异亮氨酸键被认为是一个很好的模型系统,可以更好地了解天然存在的铜金属蛋白的特征。金属-氨基酸配合物的表面结构可被认为是生物工作条件下真实系统的更现实模型,因为分子堆积减少了。在表面上,减少了结构约束,从而保持了表面复合体的结构能力随周围环境的变化而变化。在这项工作中,我们提出了在不同环境条件下对铜-异亮氨酸复合物的表面X射线衍射研究。通过在过饱和溶液中进行晶种法,已经生长了约5mm×5mm×1mm的Cu(Ile)2晶体,呈现出高质量的表面。用于表面衍射研究的样品安装在专门设计用于固/液或固/气界面分析的单元上。在干燥的氮气保护下并与饱和的金属氨基酸溶液接触,测量了Cu-异亮氨酸晶体。比较了体和表面信号,显示了不同的原子结构。在两种情况下,从表面衍射数据可以看出,顶层的原子结构经历了明显的结构变形。观察到不均匀的表面弛豫,产生了表面原子向表面法线的不均匀位移。 ©2012 Elsevier B.V.保留所有权利。

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