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在无水的情况下,Arc阻遏蛋白在压力下不会变性。

Arc repressor will not denature under pressure in the absence of water.

作者信息

Oliveira A C, Gaspar L P, Da Poian A T, Silva J L

机构信息

Departamento de Bioquimica, Universidade Federal do Rio de Janeiro, Brazil.

出版信息

J Mol Biol. 1994 Jul 15;240(3):184-7. doi: 10.1006/jmbi.1994.1433.

Abstract

Hydration forces are believed to play a determining role in protein folding. We have examined the contribution of water for the stability of the native dimer state of Arc repressor, a DNA-binding protein. Hydrostatic pressure was utilized to convert Arc repressor protein from a native state to a denatured, molten-globule state at decreasing concentrations of water. The volume change associated with Arc denaturation fell linearly with the increase in concentration of glycerol, whereas the free energy of the reaction increased. The pressure that promotes 50% denaturation (p1/2) increased in direct proportion to the concentration of glycerol or the decrease of water. Extrapolated to zero concentration of water, the data indicate that pressure denaturation would not occur without water. It is concluded that water plays a crucial role in decreasing the stability of a protein to a level that is compatible with its biological properties.

摘要

水合作用力被认为在蛋白质折叠过程中起决定性作用。我们研究了水对一种DNA结合蛋白——Arc阻遏物天然二聚体状态稳定性的贡献。在水浓度降低的情况下,利用静水压力将Arc阻遏物蛋白从天然状态转变为变性的熔球状态。与Arc变性相关的体积变化随甘油浓度的增加呈线性下降,而反应的自由能增加。促进50%变性的压力(p1/2)与甘油浓度的增加或水的减少成正比。外推到水浓度为零时,数据表明无水时不会发生压力变性。结论是,水在将蛋白质稳定性降低到与其生物学特性相适应的水平方面起着关键作用。

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