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有序和无序蛋白质作为纳米材料构建基块。

Ordered and disordered proteins as nanomaterial building blocks.

机构信息

Department of Bioengineering, University of California, Berkeley, CA, USA.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2012 Mar-Apr;4(2):204-18. doi: 10.1002/wnan.1160. Epub 2012 Jan 9.

Abstract

Proteins possess a number of attractive properties that have contributed to their recent emergence as nanoscale building blocks for biomaterials and bioinspired materials. For instance, the amino acid sequence of a protein can be precisely controlled and manipulated via recombinant DNA technology, and proteins can be biosynthesized with very high purity and virtually perfect monodispersity. Most importantly, protein-based biomaterials offer the possibility of technologically harnessing the vast array of functions that these biopolymers serve in nature. In this review, we discuss recent progress in the field of protein-based biomaterials, with an overall theme of relating protein structure to material properties. We begin by discussing materials based on proteins that have well-defined three-dimensional structures, focusing specifically on elastin- and silk-like peptides. We then explore the newer field of materials based on intrinsically disordered proteins, using nucleoporin and neurofilament proteins as case studies. A key theme throughout the review is that specific environmental stimuli can trigger protein conformational changes, which in turn can alter macroscopic material properties and function.

摘要

蛋白质具有许多吸引人的特性,这使得它们最近成为生物材料和仿生材料的纳米级构建块。例如,蛋白质的氨基酸序列可以通过重组 DNA 技术进行精确控制和操作,并且可以用非常高的纯度和几乎完美的单分散性生物合成蛋白质。最重要的是,基于蛋白质的生物材料提供了利用这些生物聚合物在自然界中所具有的各种功能的技术可能性。在这篇综述中,我们讨论了基于蛋白质的生物材料领域的最新进展,总体主题是将蛋白质结构与材料性能联系起来。我们首先讨论了具有明确三维结构的基于蛋白质的材料,特别关注弹性蛋白样肽和丝肽。然后,我们探索了基于固有无序蛋白质的新材料领域,以核孔蛋白和神经丝蛋白为例。贯穿整篇综述的一个关键主题是,特定的环境刺激可以触发蛋白质构象变化,进而改变宏观材料性能和功能。

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