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表面介导的蛋白质去折叠作为变性部位的搜索过程。

Surface-Mediated Protein Unfolding as a Search Process for Denaturing Sites.

机构信息

Department of Chemical and Biological Engineering, University of Colorado , Boulder, Colorado 80309, United States.

出版信息

ACS Nano. 2016 Jan 26;10(1):730-8. doi: 10.1021/acsnano.5b05787. Epub 2015 Nov 25.

Abstract

Surface-induced protein denaturation has important implications for the development of materials that are resistant and/or innocuous to biomolecules. Here, we studied the mechanism of lysozyme (T4L) unfolding on fused silica (FS) using single-molecule methods that provided direct insight into the cause of denaturation. Unfolding of T4L was monitored by Förster resonance energy transfer while simultaneously tracking the adsorption, diffusion, and desorption of individual molecules at the solid-solution interface. Results of high-throughput single-molecule analysis suggested that the unfolding of T4L on FS was mediated by surface diffusion and occurred on isolated nanoscale sites, which were relatively rare and distinct from the majority of the surface. These observations suggest that surface-mediated protein unfolding is a search process that is based on the exploration for denaturing sites by the protein. Ultimately, these findings have important implications for the design of protein-compatible surfaces.

摘要

表面诱导的蛋白质变性对开发具有抵抗和/或对生物分子无害特性的材料具有重要意义。在这里,我们使用单分子方法研究了溶菌酶(T4L)在熔融石英(FS)上展开的机制,该方法提供了对变性原因的直接了解。通过Förster 共振能量转移监测 T4L 的展开,同时跟踪在固-液界面处单个分子的吸附、扩散和脱附。高通量单分子分析的结果表明,T4L 在 FS 上的展开是由表面扩散介导的,并且发生在相对罕见且与表面大多数不同的孤立纳米级位点上。这些观察结果表明,表面介导的蛋白质展开是一种搜索过程,该过程基于蛋白质对变性位点的探索。最终,这些发现对设计蛋白质相容表面具有重要意义。

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