Iyoda Supra-integrated Material Project, Exploratory Research for Advanced Technology (ERATO), Japan Science and Technology Agency (JST), 4259 Nagatsuta-cho, Midori-ku, Yokohama, Kanagawa, 226-8503, Japan.
Angew Chem Int Ed Engl. 2017 Jan 24;56(5):1308-1312. doi: 10.1002/anie.201609974. Epub 2016 Dec 19.
A fluid material with high protein content (120-310 mg mL ) was formed through the ordered self-assembly of native proteins segregated from water. This material is instantly prepared by the simple mixing of a protein solution with anionic and cationic surfactants. By changing the ratio of the surfactants based on the electrostatic characteristics of the target protein, we observed that the surfactants could function as a versatile molecular glue for protein assembly. Moreover, these protein assemblies could be disassembled back into an aqueous solution depending on the salt conditions. Owing to the water-retaining properties of the hydrophilic part of surfactants, the proteins in this material are in a water-rich environment, which maintains their native structure and function. The inclusion of water also provides functional extensibility to this material, as demonstrated by the preparation of an enzymatically active gel. We anticipate that the unique features of this material will permit the use of proteins not only in solution but also as elements of integrated functionalized materials.
一种富含蛋白质的流体制备材料(120-310mg/mL),是通过将从水中分离出来的天然蛋白质有序自组装而形成的。该材料可通过将蛋白质溶液与阴离子和阳离子表面活性剂简单混合而即刻制备。通过根据目标蛋白质的静电特性改变表面活性剂的比例,我们观察到表面活性剂可以作为蛋白质组装的通用分子胶。此外,这些蛋白质组装体可以根据盐条件重新解组装回水溶液。由于表面活性剂亲水部分的保水特性,该材料中的蛋白质处于富含水的环境中,从而保持其天然结构和功能。水的存在还为该材料提供了功能延展性,例如通过制备具有酶活性的凝胶来证明。我们预计,这种材料的独特性质将不仅允许蛋白质在溶液中使用,而且还可以作为集成功能化材料的组成部分。