Zheng Chuanbao, Shmidov Yulia, Varanko Anastasia K, Deshpande Sonal, Yang Yunqi, Shapiro Daniel M, Zhang Zhisen, Zuilhof Han, Chilkoti Ashutosh, de Vries Renko
Physical Chemistry and Soft Matter, Wageningen University & Research, Wageningen, 6708WE, The Netherlands.
Laboratory of Organic Chemistry, Wageningen University & Research, Wageningen, 6708WE, The Netherlands.
Small. 2025 Aug;21(34):e2504365. doi: 10.1002/smll.202504365. Epub 2025 Jun 30.
The antifouling performance of a previously developed triblock protein, B-M-E is optimized, that self-assembles on gold surfaces to form a nonfouling layer by modifying the sequence of its E block. In this protein, B is a gold-binding domain, M is a trimerization domain, and E is a synthetic intrinsically disordered protein (IDP) that confers nonfouling behavior. To identify optimal sequences for the nonfouling E block, a few candidate IDPs are screened that provide a proxy for nonfouling behavior, such as extending the half-life of their fusion partners in systemic circulation and sequences that promote soluble expression of their fusion partners in E coli. One IDP is identified with the sequence [(GAGAIP)-(GAGEIP)] as the E block in B-M-E brush on gold, forming a nonfouling coating with performance comparable to a self-assembled monolayer (SAM) of a tetraethylene glycol-terminated alkanethiol on gold. These B-M-E brushes also render gold surfaces resistant to E. coli attachment for at least seven days. The B-M-E protein can be synthesized at scale in bacterial expression systems using the upstream fermentation and downstream purification capabilities of the biotechnology industry. It may provide a useful and robust alternative to existing nonfouling coatings based on small molecules or synthetic polymers.
一种先前开发的三嵌段蛋白质B-M-E的防污性能得到了优化,该蛋白质通过修饰其E嵌段的序列在金表面自组装形成防污层。在这种蛋白质中,B是金结合结构域,M是三聚化结构域,E是赋予防污行为的合成内在无序蛋白质(IDP)。为了确定防污E嵌段的最佳序列,筛选了一些候选IDP,它们可作为防污行为的替代指标,例如延长其融合伙伴在体循环中的半衰期以及促进其融合伙伴在大肠杆菌中可溶性表达的序列。确定了一种IDP,其序列为[(GAGAIP)-(GAGEIP)],作为金表面B-M-E刷中的E嵌段,形成了一种防污涂层,其性能与金表面四甘醇封端的烷硫醇自组装单分子层(SAM)相当。这些B-M-E刷还能使金表面在至少七天内抵抗大肠杆菌的附着。利用生物技术行业的上游发酵和下游纯化能力,可在细菌表达系统中大规模合成B-M-E蛋白质。它可能为现有的基于小分子或合成聚合物的防污涂层提供一种有用且强大的替代品。