Mejias Sara H, Aires Antonio, Couleaud Pierre, Cortajarena Aitziber L
CIC BiomaGUNE, Paseo Miramón 182, Donostia-San Sebastián, 20009, Spain.
IMDEA-Nanociencia, Campus de Cantoblanco, 28049, Madrid, Spain.
Adv Exp Med Biol. 2016;940:61-81. doi: 10.1007/978-3-319-39196-0_4.
This chapter will focus on the description of protein-based nanostructures. How proteins can be used as molecular units in order to generate complex materials and structures? What are the key aspects to achieve defined final properties, including shape, stability, function, and order at different length scales by modifying the protein sequence at the modular level?As described in other chapters of the book, we will review the basic concepts and the latest achievements in protein engineering toward nanotechnological applications. Particularly in this chapter the main focus will be on a particular type of proteins, repeat proteins. Because of their modular nature, these proteins are better suited to be used as building blocks than other protein scaffolds. First, we describe general concepts of the protein-based assemblies. Then we introduce repeat proteins and describe the properties that will impact their use in nanotechnology. In particular, we focus on a system based on a synthetic protein, the consensus tetratricopeptide repeat (CTPR). We review recent works from other groups and our group in which the potential of these repeat protein scaffolds is exploited for the fabrication of different protein assemblies, and as biomolecular templates to arrange different molecules and nanoscale objects.
本章将聚焦于基于蛋白质的纳米结构的描述。蛋白质如何作为分子单元来生成复杂的材料和结构?通过在模块化水平上修饰蛋白质序列,实现不同长度尺度下确定的最终性质(包括形状、稳定性、功能和有序性)的关键方面有哪些?正如本书其他章节所述,我们将回顾蛋白质工程在纳米技术应用方面的基本概念和最新成果。特别是在本章中,主要关注点将是一种特殊类型的蛋白质——重复蛋白。由于其模块化性质,这些蛋白质比其他蛋白质支架更适合用作构建模块。首先,我们描述基于蛋白质的组装体的一般概念。然后我们介绍重复蛋白,并描述将影响其在纳米技术中应用的性质。特别地,我们聚焦于一个基于合成蛋白——共有四肽重复序列(CTPR)的系统。我们回顾了其他研究团队和我们团队最近的工作,其中利用了这些重复蛋白支架在制造不同蛋白质组装体方面的潜力,以及作为生物分子模板来排列不同分子和纳米级物体的潜力。