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电子顺磁共振(EPR)和核磁共振(NMR)光谱学为铜(I)和银(I)与无序蛋氨酸片段的配位提供了相关信息。

EPR and NMR spectroscopies provide input on the coordination of Cu(I) and Ag(I) to a disordered methionine segment.

作者信息

Shenberger Yulia, Gottlieb Hugo E, Ruthstein Sharon

机构信息

The Department of Chemistry, Faculty of Exact Sciences, Bar Ilan University, 5290002, Ramat-Gan, Israel.

出版信息

J Biol Inorg Chem. 2015 Jun;20(4):719-27. doi: 10.1007/s00775-015-1259-1. Epub 2015 Mar 31.

Abstract

Methionine motifs are methionine-rich metal-binding segments found in many human, yeast, and bacterial proteins involved in the transportation of copper ion to other cellular pathways, and in protecting copper from oxidation. Methionine motifs are found to bind Ag(I) and Cu(I) ions. Proteins or peptides that can bind different metal ions should have the ability to differentiate between them, to be able to shuttle them to various pathways in the cell. This study utilizes electron paramagnetic resonance spectroscopy together with circular dichroism and nuclear magnetic resonance to probe structural changes in the methionine segment upon coordinating Cu(I) and Ag(I) metal ions. The data collected here indicate that methionine segments experience structural changes while coordinating Cu(I) and Ag(I), however, the differences between the coordination of Cu(I) vs. Ag(I) to the methionine segment are mild. Since Cu(I) and Ag(I) metal ions are pretty similar in their nature and charge, the minor structural changes reported here are significant towards the understanding of the differences in the transport mechanism of these two metal ions in prokaryotic and eukaryotic cells.

摘要

甲硫氨酸基序是富含甲硫氨酸的金属结合片段,存在于许多参与将铜离子转运至其他细胞途径以及保护铜不被氧化的人类、酵母和细菌蛋白质中。已发现甲硫氨酸基序能结合Ag(I)和Cu(I)离子。能够结合不同金属离子的蛋白质或肽应该具有区分它们的能力,以便能够将它们穿梭到细胞内的各种途径中。本研究利用电子顺磁共振光谱结合圆二色光谱和核磁共振来探测甲硫氨酸片段在配位Cu(I)和Ag(I)金属离子时的结构变化。此处收集的数据表明,甲硫氨酸片段在配位Cu(I)和Ag(I)时会发生结构变化,然而,Cu(I)与Ag(I)与甲硫氨酸片段配位之间的差异较小。由于Cu(I)和Ag(I)金属离子在性质和电荷上非常相似,此处报道的微小结构变化对于理解这两种金属离子在原核细胞和真核细胞中的转运机制差异具有重要意义。

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