Flanagan J M, Jacobson K B
University of Tennessee, Oak Ridge Graduate School of Biomedical Sciences, Tennessee 37831.
Biochemistry. 1988 Jul 26;27(15):5778-85. doi: 10.1021/bi00415a057.
The structure of tRNA in solution was explored by NMR spectroscopy to evaluate the effect of divalent cations, especially zinc, which has a profound effect on the chromatographic behaviour of tRNAs in certain systems. The divalent ions Mg2+ and Zn2+ have specific effects on the imino proton region of the 1H NMR spectrum of valine transfer RNA (tRNA(Val] of Escherichia coli and of phenylalanine transfer RNA (tRNA(Phe] of yeast. The dependence of the imino proton spectra of the two tRNAs was examined as a function of Zn2+ concentration. In both tRNAs the tertiary base pair (G-15).(C-48) was markedly affected by Zn2+ (shifted downfield possibly by as much as 0.4 ppm); this is the terminal base pair in the augmented dihydrouridine helix (D-helix). Base pair (U-8).(A-14) in yeast tRNA(Phe) or (s4U-8).(A-14) in tRNA1(Val), which are stacked on (G-15).(C-48), was not affected by Zn2+, except when 1-2 Mg2+ ions per tRNA were also present. Another imino proton that may be affected by Zn2+ in both tRNAs is that of the tertiary base pair (G-19).(C-46). The assignment of this resonance in yeast tRNA(Phe) is tentative since it is located in the region of highly overlapping resonances between 12.6 and 12.3 ppm. This base pair helps to anchor the D-loop to the T psi C loop.(ABSTRACT TRUNCATED AT 250 WORDS)
通过核磁共振光谱法研究了溶液中转运RNA(tRNA)的结构,以评估二价阳离子尤其是锌的影响,锌在某些系统中对tRNA的色谱行为有深远影响。二价离子Mg2+和Zn2+对大肠杆菌缬氨酸转运RNA(tRNA(Val])和酵母苯丙氨酸转运RNA(tRNA(Phe])的1H NMR谱的亚氨基质子区域有特定影响。研究了两种tRNA的亚氨基质子谱随Zn2+浓度的变化。在两种tRNA中,三级碱基对(G-15)·(C-48)都受到Zn2+的显著影响(可能向下位移多达0.4 ppm);这是扩展的二氢尿嘧啶螺旋(D-螺旋)中的末端碱基对。酵母tRNA(Phe)中的碱基对(U-8)·(A-14)或tRNA1(Val)中的(s4U-8)·(A-14),它们堆积在(G-15)·(C-48)上,除了每个tRNA还存在1-2个Mg2+离子时,不受Zn2+影响。两种tRNA中另一个可能受Zn2+影响的亚氨基质子是三级碱基对(G-19)·(C-46)的亚氨基质子。酵母tRNA(Phe)中该共振的归属是暂定的,因为它位于12.6至12.3 ppm之间高度重叠共振的区域。这个碱基对有助于将D环锚定到TψC环。(摘要截短于250字)