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乙二醇作用下核糖体的结构变化

Structural changes of ribosome by the action of ethylene glycol.

作者信息

Fox J W, Owens D P, Wong K P

出版信息

Biochemistry. 1978 Apr 18;17(8):1357-64. doi: 10.1021/bi00601a001.

Abstract

The denaturation of ribosome and RNA by ethylene glycol (EG) has been studied in an attempt to further understand the conformation and stability of the ribosome. At high concentrations of EG, the ribosome, its subunits, and 16S RNA undergo drastic structural changes as shown by circular dichroism, ultraviolet absorption spectroscopy, and sedimentation velocity. Two separate conformational transitions were observed for the 30S subunit; one from 30 to 50% EG and another from 60 to 90% EG. This observation suggests the presence of two "domains" in the 30S subunit which differ in their stability. However, the 50S subunit undergoes a single sharp transition at 60 to 90% EG, consistent with the notion of a highly cooperative conformation. Association of the subunits stablizes part of the 30S subunit since the transition curve for the 70S ribosome does not exhibit significant change at the low EG concentration region as seen for the 30S subunit. Removal of proteins from the 30S subunit broadens the transition curve to lower EG concentrations and suggests the role of proteins in stabilizing the conformation of the 16S RNA.

摘要

为了进一步了解核糖体的构象和稳定性,人们对乙二醇(EG)导致核糖体和RNA变性进行了研究。在高浓度EG条件下,核糖体、其亚基以及16S RNA会发生剧烈的结构变化,这通过圆二色性、紫外吸收光谱和沉降速度得以体现。30S亚基观察到两个不同的构象转变;一个在30%至50%的EG浓度区间,另一个在60%至90%的EG浓度区间。这一观察结果表明30S亚基中存在两个稳定性不同的“结构域”。然而,50S亚基在60%至90%的EG浓度区间经历单一的急剧转变,这与高度协同构象的概念相符。亚基的结合使30S亚基的部分结构得以稳定,因为70S核糖体的转变曲线在低EG浓度区域并未像30S亚基那样呈现出显著变化。从30S亚基中去除蛋白质会使转变曲线向更低的EG浓度区间扩展,这表明蛋白质在稳定16S RNA构象中发挥了作用。

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