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脱铁铁蛋白内表面金属离子积累过程:一系列含有不同量钯(II)离子的脱铁铁蛋白的晶体结构

Process of accumulation of metal ions on the interior surface of apo-ferritin: crystal structures of a series of apo-ferritins containing variable quantities of Pd(II) ions.

作者信息

Ueno Takafumi, Abe Mizue, Hirata Kunio, Abe Satoshi, Suzuki Masako, Shimizu Nobutaka, Yamamoto Masaki, Takata Masaki, Watanabe Yoshihito

机构信息

Institute for Integrated Cell-Material Sciences, Funai Center, Kyoto University, Katsura, Nishikyo-ku, Kyoto 615-8510, Japan.

出版信息

J Am Chem Soc. 2009 Apr 15;131(14):5094-100. doi: 10.1021/ja806688s.

Abstract

Accumulation of metal ions on protein surfaces is an important subject in the field of materials science because these processes are applicable to the preparation of bioinspired inorganic materials. While previous studies related to this subject have focused on the preparation of nanomaterials using protein scaffolds, the detailed processes of metal ion deposition and metal core formation on a protein surface require clarification. Elucidation of the coordination structures of multinuclear metal binding sites on proteins at an early stage as well as intermediate and fully occupied stages of the metal ion deposition will help us to understand the reaction mechanisms so that desirable inorganic materials can be prepared using protein scaffolds. In this Article, we report on the detailed processes of accumulation of Pd(II) ions demonstrated by a series of X-ray crystal structural analyses of apo-ferritin (apo-Fr), an iron storage protein, containing different amounts of Pd(II) ions in the protein cage. We have identified the specific binding sites of Pd(II) ions and analyzed the dynamic changes in the coordination structure by a combination of the crystal structures and ICP quantitative analyses of apo-Fr containing low, intermediate, and high content of Pd(II) ions. Our studies on Pd(II).apo-Frs provide intriguing implications for the preparation of many other inorganic materials using protein surfaces.

摘要

金属离子在蛋白质表面的积累是材料科学领域的一个重要课题,因为这些过程适用于生物启发的无机材料的制备。虽然此前与该课题相关的研究主要集中在使用蛋白质支架制备纳米材料,但金属离子在蛋白质表面沉积以及金属核形成的详细过程仍需阐明。在金属离子沉积的早期阶段以及中期和完全占据阶段阐明蛋白质上多核金属结合位点的配位结构,将有助于我们理解反应机制,从而能够使用蛋白质支架制备出理想的无机材料。在本文中,我们报告了通过对脱铁铁蛋白(apo-Fr)进行一系列X射线晶体结构分析所展示的Pd(II)离子积累的详细过程,脱铁铁蛋白是一种铁储存蛋白,其蛋白笼中含有不同量的Pd(II)离子。我们确定了Pd(II)离子的特定结合位点,并通过结合晶体结构以及对含有低、中、高含量Pd(II)离子的apo-Fr进行ICP定量分析,分析了配位结构的动态变化。我们对Pd(II)-apo-Frs的研究为利用蛋白质表面制备许多其他无机材料提供了有趣的启示。

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