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酵母苯丙氨酸转运核糖核酸(tRNA(Phe))的反密码子与氨酰基受体茎之间的夹角受到镁离子的强烈调控。

The angle between the anticodon and aminoacyl acceptor stems of yeast tRNA(Phe) is strongly modulated by magnesium ions.

作者信息

Friederich M W, Hagerman P J

机构信息

Department of Biochemistry, Biophysics, and Genetics, University of Colorado Health Sciences Center, Denver 80262, USA.

出版信息

Biochemistry. 1997 May 20;36(20):6090-9. doi: 10.1021/bi970066f.

Abstract

Many tRNAs undergo tertiary folding transitions at temperatures well below the main thermally induced (hyperchromic) transition. Such transitions are essentially isochromic and isoenthalpic and display an absolute requirement for divalent cations; however, the nature of the structural transition is not known for any tRNA. Using a combination of transient electric birefringence (TEB) and gel electrophoretic measurements, we have characterized the influence of magnesium ions on the apparent angle between the anticodon and acceptor stems of a yeast tRNA(Phe) construct. TEB is a particularly sensitive method for quantifying the bends introduced in RNA by various nonhelix elements. In the current instance, the tRNA construct comprises an unmodified tRNA(Phe) molecule in which the anticodon and acceptor stems have been extended by approximately 70 bp to more effectively "report" the interstem angles. Upon the addition of sub-millimolar concentrations of magnesium ions, the tRNA core undergoes a substantial rearrangement in tertiary structure, passing from an open form with an apparent interstem angle of approximately 150 degrees to a conformation with an interstem angle of approximately 70 degrees (200 microM Mg2+). Further addition of magnesium ions results in a minor adjustment of the apparent interstem angle to approximately 80-90 degrees, in line with earlier results. Finally, the magnesium-induced structural transition is essentially isochromic, in agreement with previous observations with native tRNAs. The current results suggest that changes in local divalent ion concentration in the ribosome could profoundly affect the global conformations of tRNAs during the translation cycle.

摘要

许多转运RNA(tRNA)在远低于主要热诱导(增色)转变的温度下经历三级折叠转变。这种转变本质上是等色和等焓的,并且绝对需要二价阳离子;然而,任何tRNA的结构转变性质都尚不清楚。通过结合瞬态电双折射(TEB)和凝胶电泳测量,我们表征了镁离子对酵母tRNA(苯丙氨酸)构建体的反密码子茎和受体茎之间视在角度的影响。TEB是一种特别灵敏的方法,用于量化各种非螺旋元件在RNA中引入的弯曲。在当前情况下,tRNA构建体包含一个未修饰的tRNA(苯丙氨酸)分子,其中反密码子茎和受体茎已延伸约70个碱基对,以更有效地“报告”茎间角度。加入亚毫摩尔浓度的镁离子后,tRNA核心在三级结构上发生了实质性重排,从具有约150度视在茎间角度的开放形式转变为具有约70度茎间角度的构象(200微摩尔镁离子)。进一步添加镁离子会导致视在茎间角度略微调整至约80 - 90度,这与早期结果一致。最后,镁诱导的结构转变本质上是等色的,这与之前对天然tRNA的观察结果一致。目前的结果表明,核糖体中局部二价离子浓度的变化可能会在翻译循环期间深刻影响tRNA的整体构象。

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