Faculty of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Ibaraki, Japan.
PLoS One. 2013 Aug 13;8(8):e70762. doi: 10.1371/journal.pone.0070762. eCollection 2013.
Nonspecific adsorption of protein on solid surfaces causes a reduction of concentration as well as enzyme inactivation during purification and storage. However, there are no versatile inhibitors of the adsorption between proteins and solid surfaces at low concentrations. Therefore, we examined additives for the prevention of protein adsorption on polystyrene particles (PS particles) as a commonly-used material for vessels such as disposable test tubes and microtubes. A protein solution was mixed with PS particles, and then adsorption of protein was monitored by the concentration and activity of protein in the supernatant after centrifugation. Five different proteins bound to PS particles through electrostatic, hydrophobic, and aromatic interactions, causing a decrease in protein concentration and loss of enzyme activity in the supernatant. Among the additives, including arginine hydrochloride (Arg), lysine hydrochloride, guanidine hydrochloride, NaCl, glycine, and glucose, Arg was most effective in preventing the binding of proteins to PS particles as well as activity loss. Moreover, even after the mixing of protein and PS particles, the addition of Arg caused desorption of the bound protein from PS particles. This study demonstrated a new function of Arg, which expands the potential for application of Arg to proteins.
在蛋白质的纯化和储存过程中,由于蛋白质在固体表面上的非特异性吸附,会导致浓度降低和酶失活。然而,在低浓度下,并没有能够通用地抑制蛋白质与固体表面之间吸附的抑制剂。因此,我们研究了添加物,以防止蛋白质在聚苯乙烯颗粒(PS 颗粒)上的吸附,PS 颗粒是一次性试管和微量离心管等容器中常用的材料。将蛋白质溶液与 PS 颗粒混合,然后通过离心后上清液中蛋白质的浓度和活性来监测蛋白质的吸附情况。五种不同的蛋白质通过静电、疏水和芳环相互作用与 PS 颗粒结合,导致蛋白质浓度降低和上清液中酶活性丧失。在包括盐酸精氨酸(Arg)、盐酸赖氨酸、盐酸胍、NaCl、甘氨酸和葡萄糖在内的添加剂中,Arg 最有效地防止了蛋白质与 PS 颗粒的结合以及活性丧失。此外,即使在蛋白质和 PS 颗粒混合后,添加 Arg 也会导致结合的蛋白质从 PS 颗粒上解吸。这项研究展示了 Arg 的新功能,这扩大了 Arg 在蛋白质方面的应用潜力。