Department of Chemical Engineering, Massachusetts Institute of Technology , Cambridge, Massachusetts 02139, United States.
Biomacromolecules. 2014 Apr 14;15(4):1248-58. doi: 10.1021/bm401817p. Epub 2014 Mar 21.
The effects of protein surface potential on the self-assembly of protein-polymer block copolymers are investigated in globular proteins with controlled shape through two approaches: comparison of self-assembly of mCherry-poly(N-isopropylacrylamide) (PNIPAM) bioconjugates with structurally homologous enhanced green fluorescent protein (EGFP)-PNIPAM bioconjugates, and mutants of mCherry with altered electrostatic patchiness. Despite large changes in amino acid sequence, the temperature-concentration phase diagrams of EGFP-PNIPAM and mCherry-PNIPAM conjugates have similar phase transition concentrations. Both materials form identical phases at two different coil fractions below the PNIPAM thermal transition temperature and in the bulk. However, at temperatures above the thermoresponsive transition, mCherry conjugates form hexagonal phases at high concentrations while EGFP conjugates form a disordered micellar phase. At lower concentration, mCherry shows a two-phase region while EGFP forms homogeneous disordered micellar structures, reflecting the effect of changes in micellar stability. Conjugates of four mCherry variants with changes to their electrostatic surface patchiness also showed minimal change in phase behavior, suggesting that surface patchiness has only a small effect on the self-assembly process. Measurements of protein/polymer miscibility, second virial coefficients, and zeta potential show that these coarse-grained interactions are similar between mCherry and EGFP, indicating that coarse-grained interactions largely capture the relevant physics for soluble, monomeric globular protein-polymer conjugate self-assembly.
通过两种方法研究了蛋白质表面电势对具有可控形状的球状蛋白质中蛋白质-聚合物嵌段共聚物自组装的影响:比较具有结构同源性的增强型绿色荧光蛋白(EGFP)-聚(N-异丙基丙烯酰胺)(PNIPAM)生物缀合物与 mCherry-PNIPAM 生物缀合物的自组装,以及改变静电斑片状的 mCherry 突变体。尽管氨基酸序列发生了很大变化,但 EGFP-PNIPAM 和 mCherry-PNIPAM 缀合物的温度-浓度相图具有相似的相变浓度。两种材料在 PNIPAM 热转变温度以下的两个不同的线圈分数和本体中形成相同的相。然而,在高于热响应转变温度时,mCherry 缀合物在高浓度下形成六方相,而 EGFP 缀合物形成无序胶束相。在较低的浓度下,mCherry 显示出两相区域,而 EGFP 形成均匀的无序胶束结构,反映了胶束稳定性变化的影响。改变其静电表面斑片状的四个 mCherry 变体的缀合物也表现出相行为的最小变化,表明表面斑片状对自组装过程的影响很小。蛋白质/聚合物混溶性、第二维里系数和 ζ 电位的测量表明,mCherry 和 EGFP 之间的这些粗粒相互作用相似,表明粗粒相互作用在很大程度上捕获了可溶性单体球状蛋白质-聚合物缀合物自组装的相关物理性质。