高分子拥挤
高分子
圆二色性
菲科尔
化学
折叠(DSP实现)
核糖核酸酶
聚乙二醇
PEG比率
荧光相关光谱
核糖核酸酶P
荧光光谱法
渗透压
蛋白质折叠
无规线圈
荧光
结晶学
生物物理学
分子
生物化学
有机化学
生物
体外
外周血单个核细胞
工程类
核糖核酸
量子力学
物理
财务
电气工程
经济
基因
作者
Nobuhiko Tokuriki,Masataka Kinjo,Shigeru Negi,Masaru Hoshino,Yuji Goto,Itaru Urabe,Tetsuya Yomo
摘要
Abstract Unfolded states of ribonuclease A were used to investigate the effects of macromolecular crowding on macromolecular compactness and protein folding. The extent of protein folding and compactness were measured by circular dichroism spectroscopy, fluorescence correlation spectroscopy, and NMR spectroscopy in the presence of polyethylene glycol (PEG) or Ficoll as the crowding agent. The unfolded state of RNase A in a 2.4 M urea solution at pH 3.0 became native in conformation and compactness by the addition of 35% PEG 20000 or Ficoll 70. In addition, the effects of macromolecular crowding on inert macromolecule compactness were investigated by fluorescence correlation spectroscopy using Fluorescence‐labeled PEG as a test macromolecule. The size of Fluorescence‐labeled PEG decreased remarkably with an increase in the concentration of PEG 20000 or Ficoll 70. These results show that macromolecules are favored compact conformations in the presence of a high concentration of macromolecules and indicate the importance of a crowded environment for the folding and stabilization of globular proteins. Furthermore, the magnitude of the effects on macromolecular crowding by the different sizes of background molecules was investigated. RNase A and Fluorescence‐labeled PEG did not become compact, and had folded conformation by the addition of PEG 200. The effect of the chemical potential on the compaction of a test molecule in relation to the relative sizes of the test and background molecules is also discussed.
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