Department of Applied Chemistry, Graduate School of Engineering, Osaka University, 2-1 Yamadaoka, Suita 565-0871, Japan.
Int J Mol Sci. 2021 Jan 20;22(3):1012. doi: 10.3390/ijms22031012.
Proteins have been used as building blocks to provide various supramolecular structures in efforts to develop nano-biomaterials possessing broad biological functionalities. A series of unique structures have been obtained from the engineering of hemoproteins which contain the iron porphyrin known as heme, as a prosthetic group. This work in developing assembling systems is extended using cytochrome b, a small electron transfer hemoprotein engineered to include an externally-attached heme moiety. The engineered units, which form a one-dimensional assembly via interprotein heme-heme pocket interactions, are conjugated to an apo-form of hexameric tyrosine-coordinated hemoprotein (apoHTHP) to provide a branching unit promoting the assembly of a star-shaped structure. The incorporation of the heme moiety attached to the protein surface of cytochrome b into apoHTHP can be accelerated by elevating the reaction temperature to generate a new assembly. The formation of a new larger assembly structure was confirmed by size exclusion chromatography. The ratio of the heme-containing units in the assemblies was analyzed by UV-Vis spectroscopy and the population of protein units estimated from SDS PAGE suggests the presence of plausible star-shaped structures, which are supported by hydrodynamic diameter data obtained by dynamic light scattering.
蛋白质被用作构建模块,以提供各种超分子结构,努力开发具有广泛生物学功能的纳米生物材料。通过工程化含有血红素作为辅基的血红素蛋白,获得了一系列独特的结构。这项开发组装系统的工作使用细胞色素 b 进行了扩展,细胞色素 b 是一种经过工程改造的小型电子转移血红素蛋白,其中包含一个外部附着的血红素部分。通过蛋白质间血红素-口袋相互作用形成一维组装的工程化单元与脱辅基六聚酪氨酸配位血红素蛋白(apoHTHP)缀合,提供促进星形结构组装的分支单元。通过升高反应温度可以加速将附着在细胞色素 b 蛋白质表面的血红素部分掺入 apoHTHP 中,以生成新的组装体。通过尺寸排阻层析法证实了新的更大组装结构的形成。通过紫外可见光谱分析了组装体中含血红素单元的比例,并通过 SDS-PAGE 估计蛋白质单元的数量表明存在合理的星形结构,这得到了动态光散射获得的流体力学直径数据的支持。