Kelarakis Antonios, Castelletto Valeria, Krysmann Marta J, Havredaki Vasiliki, Viras Kyriakos, Hamley Ian W
National and Kapodistrian University of Athens, Department of Chemistry, Physical Chemistry Laboratory, Panepistimiopolis, 157 71 Athens, Greece.
Biomacromolecules. 2008 May;9(5):1366-71. doi: 10.1021/bm800046m. Epub 2008 Apr 8.
The interactions of bovine serum albumin (BSA) with three ethylene oxide/butylene oxide (E/B) copolymers having different block lengths and varying molecular architectures is examined in this study in aqueous solutions. Dynamic light scattering (DLS) indicates the absence of BSA-polymer binding in micellar systems of copolymers with lengthy hydrophilic blocks. On the contrary, stable protein-polymer aggregates were observed in the case of E 18B 10 block copolymer. Results from DLS and SAXS suggest the dissociation of E/B copolymer micelles in the presence of protein and the absorption of polymer chains to BSA surface. At high protein loadings, bound BSA adopts a more compact conformation in solution. The secondary structure of the protein remains essentially unaffected even at high polymer concentrations. Raman spectroscopy was used to give insight to the configurations of the bound molecules in concentrated solutions. In the vicinity of the critical gel concentration of E 18B 10 introduction of BSA can dramatically modify the phase diagram, inducing a gel-sol-gel transition. The overall picture of the interaction diagram of the E 18B 10-BSA reflects the shrinkage of the suspended particles due to destabilization of micelles induced by BSA and the gelator nature of the globular protein. SAXS and rheology were used to further characterize the structure and flow behavior of the polymer-protein hybrid gels and sols.
本研究考察了牛血清白蛋白(BSA)与三种具有不同嵌段长度和不同分子结构的环氧乙烷/环氧丁烷(E/B)共聚物在水溶液中的相互作用。动态光散射(DLS)表明,在具有长亲水性嵌段的共聚物胶束体系中不存在BSA-聚合物结合。相反,在E 18B 10嵌段共聚物的情况下观察到了稳定的蛋白质-聚合物聚集体。DLS和小角X射线散射(SAXS)的结果表明,在蛋白质存在下E/B共聚物胶束发生解离,聚合物链吸附到BSA表面。在高蛋白质负载量下,结合的BSA在溶液中采取更紧凑的构象。即使在高聚合物浓度下,蛋白质的二级结构基本上仍未受影响。拉曼光谱用于深入了解浓溶液中结合分子的构型。在E 18B 10的临界凝胶浓度附近,引入BSA可显著改变相图,引发凝胶-溶胶-凝胶转变。E 18B 10-BSA相互作用图的整体情况反映了由于BSA诱导的胶束失稳导致悬浮颗粒收缩以及球状蛋白质的凝胶剂性质。SAXS和流变学用于进一步表征聚合物-蛋白质混合凝胶和溶胶的结构和流动行为。