Department of Chemistry, Indian Institute of Science Education and Research, 100 Homi Bhabha Road, Pune, 411008, India.
Department of Biology, Indian Institute of Science Education and Research, 100 Homi Bhabha Road, Pune, 411008, India.
Chembiochem. 2021 Mar 2;22(5):876-887. doi: 10.1002/cbic.202000581. Epub 2020 Nov 19.
The rational design of a multi-responsive protein-based supramolecular system that can predictably respond to more than one stimulus remains an essential but highly challenging goal in biomolecular engineering. Herein, we report a novel chemical method for the construction of multi-responsive supramolecular nanoassemblies using custom-designed facially amphiphilic monodisperse protein-dendron bioconjugates. The macromolecular synthons contain a globular hydrophilic protein domain site-specifically conjugated to photo-responsive hydrophobic benzyl-ether dendrons of different generations through oligo(ethylene glycol) linkers of defined length. The size of the protein nanoassemblies can be systematically tuned by choosing an appropriate dendron or linker of defined length. Exposure of protein nanoassemblies to light results in partial rather than complete disassembly of the complex. The newly formed protein nanoparticle no longer responds to light but could be disassembled into constitutive monomers under acidic conditions or by further treatment with a small molecule. More interestingly, the distribution ratio of the assembled versus disassembled states of protein nanoassemblies after photochemical reaction does not depend on dendron generation, the nature of the linker functionality or the identity of the protein, but is heavily influenced by the linker length. In sum, this work discloses a new chemical method for the rational design of a monodisperse multi-responsive protein-based supramolecular system with exquisite control over the disassembly process.
设计能够对多种刺激做出可预测响应的多功能响应蛋白基超分子体系仍然是生物分子工程中一个必不可少但极具挑战性的目标。在此,我们报告了一种使用定制设计的具有面两亲性的单分散蛋白-树状大分子生物缀合物构建多功能响应超分子纳米组装体的新化学方法。这些大分子合成子包含通过具有确定长度的寡乙二醇接头特异性连接到光响应性疏水性苄醚树枝状大分子的不同代的球状亲水性蛋白结构域。通过选择适当的树枝状大分子或具有确定长度的接头,可以系统地调节蛋白纳米组装体的尺寸。暴露于光下会导致蛋白质纳米组装体部分而非完全解组装。新形成的蛋白质纳米颗粒不再对光响应,但在酸性条件下或通过进一步用小分子处理可以将其解组装成组成单体。更有趣的是,光化学反应后组装态与去组装态的蛋白质纳米组装体的分布比不仅不依赖于树枝状大分子的代,接头官能团的性质或蛋白质的种类,而且还受接头长度的强烈影响。总之,这项工作揭示了一种新的化学方法,用于合理设计具有精密控制解组装过程的单分散多功能响应蛋白基超分子体系。