能源景观
磁镊
蛋白质折叠
折叠(DSP实现)
光学镊子
自由空间
蛋白质工程
化学物理
化学
生物物理学
结晶学
纳米技术
物理
材料科学
生物
生物化学
工程类
光学
电气工程
酶
作者
Hao Sun,Shimin Le,Zilong Guo,Hu Chen
出处
期刊:Methods in Enzymology
日期:2024-01-01
标识
DOI:10.1016/bs.mie.2023.12.008
摘要
Proteins fold to their native states by searching through the free energy landscapes. As single-domain proteins are the basic building block of multiple-domain proteins or protein complexes composed of subunits, the free energy landscapes of single-domain proteins are of critical importance to understand the folding and unfolding processes of proteins. To explore the free energy landscapes of proteins over large conformational space, the stability of native structure is perturbed by biochemical or mechanical means, and the conformational transition process is measured. In single molecular manipulation experiments, stretching force is applied to proteins, and the folding and unfolding transitions are recorded by the extension time course. Due to the broad force range and long-time stability of magnetic tweezers, the free energy landscape over large conformational space can be obtained. In this article, we describe the magnetic tweezers instrument design, protein construct design and preparation, fluid chamber preparation, common-used measuring protocols including force-ramp and force-jump measurements, and data analysis methods to construct the free energy landscape. Single-domain cold shock protein is introduced as an example to build its free energy landscape by magnetic tweezers measurements.
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