Division of Molecular Materials Science, Graduate School of Science, Osaka City University, 3-3-138 Sugimoto, Sumiyoshi-ku, Osaka 558-8585, Japan.
Division of Biology & Geosciences, Graduate School of Science, Osaka City University, 3-3-138 Sugimoto, Sumiyoshi-ku, Osaka 558-8585, Japan.
Inorg Chem. 2021 Apr 5;60(7):4693-4704. doi: 10.1021/acs.inorgchem.0c03660. Epub 2021 Mar 18.
Since the bullfrog H-ferritin L134P mutant in which leucine 134 is replaced with proline was found to exhibit a flexible conformation in the axis channel, homologous ferritins with the corresponding mutation have often been studied in terms of a mechanism of iron release from the mineral core within the protein cavity. Meanwhile, a ferritin mutant with the flexible channel is an attractive material in developing a method to encapsulate functional molecules larger than mononuclear ions into the protein cavity. This study describes the clathrate with a horse spleen L-ferritin L134P mutant containing Prussian blue (PB) without a frequently used technique, disassembly and reassembly of the protein subunits. The spherical shell of ferritin was confirmed in a TEM image of the clathrate. The produced clathrate (PB@L134P) was soluble in water and reproduced the spectroscopic and electrochemical properties of PB prepared using the conventional method. The catalytic activity for an oxidoreductive reaction with HO, one of the major applications of conventional PB, was also observed for the clathrate. The instability of PB in alkaline solutions, limiting its wide applications in aqueous media, was significantly improved in PB@L134P, showing the protective effect of the protein shell. The method developed here shows that horse spleen L-ferritin L134P is a useful scaffold to produce clathrates of three-dimensional complexes with ferritin.
由于发现牛蛙 H 铁蛋白 L134P 突变体中亮氨酸 134 被脯氨酸取代后在[Fe 2+]轴通道中呈现出柔性构象,因此经常研究具有相应突变的同源铁蛋白,以了解从蛋白腔中的矿物核心中释放铁的机制。同时,具有柔性通道的铁蛋白突变体是开发将大于单核离子的功能分子封装到蛋白腔中的方法的有吸引力的材料。本研究描述了一种笼形物,其中含有普鲁士蓝 (PB) 的马脾 L 铁蛋白 L134P 突变体,而无需使用经常使用的技术,即蛋白亚基的拆卸和重新组装。笼形物的铁蛋白球形壳在笼形物的 TEM 图像中得到证实。所制备的笼形物(PB@L134P)可溶于水,并重现了使用常规方法制备的 PB 的光谱和电化学性质。对于常规 PB 的主要应用之一的 HO 的氧化还原反应的催化活性也在笼形物中观察到。PB 在碱性溶液中的不稳定性限制了其在水介质中的广泛应用,而在 PB@L134P 中得到了显著改善,表明了蛋白壳的保护作用。这里开发的方法表明,马脾 L 铁蛋白 L134P 是一种有用的支架,可用于生成具有铁蛋白的三维配合物的笼形物。