Roset Julià Laura, Maerkl Sebastian J, Stellacci Francesco
Institute of Materials, Ecole Polytechnique Fédérale de Lausanne (EPFL) 1015 Lausanne Switzerland
NCCR Bio-Inspired Materials, Ecole Polytechnique Fédérale de Lausanne (EPFL) 1015 Lausanne Switzerland.
RSC Sustain. 2024 Jul 23;2(10):2903-2909. doi: 10.1039/d4su00212a. eCollection 2024 Oct 3.
Protein-based materials are biocompatible and have a variety of remarkable properties; consequently, they are finding more and more applications. Nature recycles proteins in multiple ways, ranging from bio-degradation (a slow approach) to fast recycling of protein metabolism. The latter is a wonderful example because a random mixture of proteins gets digested into amino acids (AAs), the fundamental building blocks of proteins. These AAs are then used by cells to produce whichever protein is needed at the time of synthesis. Seen through the lens of recycling, this process transforms a random mixture into something not necessarily present at the start but needed at the moment of recycling. We have recently shown that the process of protein recycling can be performed and called it NaCRe (Nature Inspired Circular Recycling). In a previous NaCRe proof-of-concept experiment, we started with various protein mixtures but were able to produce only small quantities of recycled protein, in the microgram scale. Here, we show that NaCRe can be used to convert milligrams of a protein mixture containing one of the most common protein materials (silk) into a milligram of an hydrogel made of green fluorescent protein (GFP). We show that in order for NaCRe to be efficient the starting protein mixture must contain a good balance of all AAs and discuss the challenges encountered when scaling up NaCRe.
基于蛋白质的材料具有生物相容性,并具备多种卓越特性;因此,它们正得到越来越广泛的应用。自然界以多种方式循环利用蛋白质,从生物降解(一种缓慢的方式)到蛋白质代谢的快速循环。后者是个很好的例子,因为蛋白质的随机混合物会被消化成氨基酸,而氨基酸是蛋白质的基本组成单元。然后,细胞利用这些氨基酸合成当时所需的任何蛋白质。从循环利用的角度来看,这个过程将随机混合物转化为一开始不一定存在但在循环利用时所需要的物质。我们最近表明蛋白质循环利用过程是可以实现的,并将其称为NaCRe(受自然启发的循环利用)。在之前的NaCRe概念验证实验中,我们从各种蛋白质混合物开始,但只能生产出微克级的少量回收蛋白质。在此,我们展示了NaCRe可用于将毫克级的包含最常见蛋白质材料之一(丝绸)的蛋白质混合物转化为毫克级的由绿色荧光蛋白(GFP)制成的水凝胶。我们表明,为使NaCRe高效运行,起始蛋白质混合物必须含有各种氨基酸的良好平衡,并讨论了扩大NaCRe规模时遇到的挑战。