Bujalowski W, Graeser E, McLaughlin L W, Proschke D
Biochemistry. 1986 Oct 21;25(21):6365-71. doi: 10.1021/bi00369a004.
The structure, dynamics, and Mg2+ binding reactions of the isolated anticodon hairpin loop from tRNAPhe (yeast) have been analyzed by fluorescence-detected temperature-jump relaxation, melting experiments, and equilibrium sedimentation. Most of the measurements were performed at an ionic strength of 0.15 M and at temperatures below 25 degrees C, where the hairpin loop proved to be stable. A relaxation effect with a time constant of approximately 100 microseconds, indicated by the Wye base fluorescence, is attributed to a conformational change of the anticodon loop and is very similar to a corresponding transition observed previously for the whole tRNAPhe molecule. A Mg2+ binding site reflected by an inner-sphere relaxation process and associated with a strong increase of the Wye base fluorescence closely resembles a corresponding site observed in the complete tRNAPhe and is attributed to a site in the anticodon loop identified by X-ray analysis. In addition to the Mg2+ site in the loop, which is associated with a binding constant of 2 X 10(3) M-1, the existence of sites with a higher affinity is demonstrated by an unusual relaxation effect, showing a minimum in the reciprocal time constant with increasing Mg2+ concentration. The experimental data can be described by a transition between two states and Mg2+ binding to both states resulting in a reaction cycle, which is extended by an additional Mg2+ binding reaction to one of the states. The unusual effect has not been observed for the complete tRNAPhe and is also not observed when Ca2+ is added instead of Mg2+. This result indicates the existence of a conformational change involving Mg2+ inner-sphere complexation.(ABSTRACT TRUNCATED AT 250 WORDS)
通过荧光检测温度跳跃弛豫、熔解实验和平衡沉降,对来自酵母苯丙氨酸转运核糖核酸(tRNAPhe)的分离反密码子发夹环的结构、动力学及Mg2+结合反应进行了分析。大多数测量在离子强度为0.15 M且温度低于25摄氏度的条件下进行,此时发夹环被证明是稳定的。由怀碱基荧光显示的时间常数约为100微秒的弛豫效应,归因于反密码子环的构象变化,并且与之前在整个tRNAPhe分子中观察到的相应转变非常相似。由内球弛豫过程反映并伴随着怀碱基荧光强烈增强的Mg2+结合位点,与在完整tRNAPhe中观察到的相应位点非常相似,并且归因于通过X射线分析确定的反密码子环中的一个位点。除了环中的Mg2+位点(其结合常数为2×10³ M⁻¹)外,具有更高亲和力的位点的存在通过一种不寻常的弛豫效应得以证明,即随着Mg2+浓度增加,倒数时间常数出现最小值。实验数据可以用两种状态之间的转变以及Mg2+与两种状态的结合来描述,从而形成一个反应循环,该循环通过向其中一种状态额外添加Mg2+结合反应而得以扩展。对于完整的tRNAPhe未观察到这种不寻常的效应,并且当添加Ca2+代替Mg2+时也未观察到。该结果表明存在涉及Mg2+内球络合的构象变化。(摘要截断于250字)