Stepanenko Olga V, Povarova Olga I, Sulatskaya Anna I, Ferreira Luisa A, Zaslavsky Boris Y, Kuznetsova Irina M, Turoverov Konstantin K, Uversky Vladimir N
a Laboratory of Structural Dynamics, Stability and Folding of Proteins , Institute of Cytology, Russian Academy of Sciences , St. Petersburg , Russia.
b Cleveland Diagnostics , 3615 Superior Ave., Suite 4407B, Cleveland , OH 44114 , USA.
J Biomol Struct Dyn. 2016 Oct;34(10):2155-70. doi: 10.1080/07391102.2015.1109554. Epub 2016 Jan 6.
The natural environment of a protein inside a cell is characterized by the almost complete lack of unoccupied space, limited amount of free water, and the tightly packed crowd of various biological macromolecules, such as proteins, nucleic acids, polysaccharides, and complexes thereof. This extremely crowded natural milieu is poorly mimicked by slightly salted aqueous solutions containing low concentrations of a protein of interest. The accepted practice is to model crowded environments by adding high concentrations of various polymers that serve as model "crowding agents" to the solution of a protein of interest. Although studies performed under these model conditions revealed that macromolecular crowding might have noticeable influence on various aspects related to the protein structure, function, folding, conformational stability, and aggregation propensity, the complete picture describing conformational behavior of a protein under these conditions is missing as of yet. Furthermore, there is an accepted belief that the conformational stability of globular proteins increases in the presence crowding agents due to the excluded volume effects. The goal of this study was to conduct a systematic analysis of the effect of high concentrations of PEG-8000 and Dextran-70 on the unfolding behavior of eleven globular proteins belonging to different structural classes.
几乎完全没有未占据的空间、自由水含量有限,以及各种生物大分子(如蛋白质、核酸、多糖及其复合物)紧密聚集。这种极度拥挤的自然环境很难用含有低浓度目标蛋白质的微咸水溶液来模拟。通常的做法是通过向目标蛋白质溶液中添加高浓度的各种聚合物作为模型“拥挤剂”来模拟拥挤环境。尽管在这些模型条件下进行的研究表明,大分子拥挤可能会对与蛋白质结构、功能、折叠、构象稳定性和聚集倾向相关的各个方面产生显著影响,但截至目前,尚未有完整描述蛋白质在这些条件下构象行为的情况。此外,人们普遍认为,由于排阻体积效应,球状蛋白质在存在拥挤剂的情况下构象稳定性会增加。本研究的目的是系统分析高浓度的聚乙二醇-8000(PEG-8000)和葡聚糖-70(Dextran-70)对十一种不同结构类别的球状蛋白质展开行为的影响。