López Barreiro Diego, Minten Inge J, Thies Jens C, Sagt Cees M J
DSM Biotechnology Center, DSM, Alexander Fleminglaan 1, 2613 AX Delft, The Netherlands.
DSM Materials Science Center - Applied Science Center, DSM, Urmonderbaan 22, 6160 BB, Geleen, The Netherlands.
ACS Biomater Sci Eng. 2023 Jul 10;9(7):3796-3809. doi: 10.1021/acsbiomaterials.1c00145. Epub 2021 Jul 12.
Elastin is a structural protein with outstanding mechanical properties (e.g., elasticity and resilience) and biologically relevant functions (e.g., triggering responses like cell adhesion or chemotaxis). It is formed from its precursor tropoelastin, a 60-72 kDa water-soluble and temperature-responsive protein that coacervates at physiological temperature, undergoing a phenomenon termed lower critical solution temperature (LCST). Inspired by this behavior, many scientists and engineers are developing recombinantly produced elastin-inspired biopolymers, usually termed elastin-like polypeptides (ELPs). These ELPs are generally comprised of repetitive motifs with the sequence VPGXG, which corresponds to repeats of a small part of the tropoelastin sequence, X being any amino acid except proline. ELPs display LCST and mechanical properties similar to tropoelastin, which renders them promising candidates for the development of elastic and stimuli-responsive protein-based materials. Unveiling the structure-property relationships of ELPs can aid in the development of these materials by establishing the connections between the ELP amino acid sequence and the macroscopic properties of the materials. Here we present a review of the structure-property relationships of ELPs and ELP-based materials, with a focus on LCST and mechanical properties and how experimental and computational studies have aided in their understanding.
弹性蛋白是一种具有出色机械性能(如弹性和回弹性)以及生物学相关功能(如引发细胞黏附或趋化性等反应)的结构蛋白。它由其前体原弹性蛋白形成,原弹性蛋白是一种60 - 72 kDa的水溶性且对温度敏感的蛋白质,在生理温度下会凝聚,经历一种称为最低临界溶液温度(LCST)的现象。受此行为启发,许多科学家和工程师正在开发重组生产的受弹性蛋白启发的生物聚合物,通常称为类弹性蛋白多肽(ELP)。这些ELP一般由具有VPGXG序列的重复基序组成,该序列对应于原弹性蛋白序列一小部分的重复,X为除脯氨酸以外的任何氨基酸。ELP表现出与原弹性蛋白相似的LCST和机械性能,这使其成为开发基于蛋白质的弹性和刺激响应材料的有前景的候选物。揭示ELP的结构 - 性能关系有助于通过建立ELP氨基酸序列与材料宏观性能之间的联系来开发这些材料。在此,我们对ELP和基于ELP的材料的结构 - 性能关系进行综述,重点关注LCST和机械性能以及实验和计算研究如何有助于对它们的理解。