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缬氨酸转运核糖核酸修饰碱基的核磁共振氢谱。多种构象的证据。

1H NMR of valine tRNA modified bases. Evidence for multiple conformations.

作者信息

Kastrup R V, Schmidt P G

出版信息

Nucleic Acids Res. 1978 Jan;5(1):257-69. doi: 10.1093/nar/5.1.257.

Abstract

Methyl and methylene protons of dihydrouridine 17 (hU), 6-methyladenosine 37 (M6A), 7-methylguanosine 46 (m7G), and ribothymidine 54 (rT) give clearly resolved peaks (220 MHz) for tRNA1val (coli solutions in D2O, 0.25 m NaCl, at 27 degrees C. Chemical shifts are generally consistent with a solution structure of tRNA1val similar to the crystal structure of tRNAphe (yeast). At least 3 separate transitions are observed as the temperature is raised. The earliest involves disruption of native tertiary structure and formation of intermediate structures in the m7G and rT regions. A second transition results in a change in structure of the anticodon loop, containing m6A. The final step involves unfolding of the m7G and rT intermediates and melting of the TpsiC helix. Low salt concentrations produce multiple, partially denatured conformations, rather than a unique form, for tRNA1val. Native structure is almost completely reformed by addition of Na+ but Mg2+ is required for correct conformation in the vicinity of m7G.

摘要

二氢尿苷17(hU)、6-甲基腺苷37(M6A)、7-甲基鸟苷46(m7G)和核糖胸苷54(rT)的甲基和亚甲基质子,对于tRNA1val(大肠杆菌溶液,重水,0.25 m氯化钠,27摄氏度)给出清晰分辨的峰(220兆赫)。化学位移通常与类似于tRNAphe(酵母)晶体结构的tRNA1val溶液结构一致。当温度升高时,至少观察到3个独立的转变。最早的转变涉及天然三级结构的破坏以及m7G和rT区域中间结构的形成。第二个转变导致含有m6A的反密码子环结构发生变化。最后一步涉及m7G和rT中间体的解折叠以及TpsiC螺旋的解链。低盐浓度会产生多种部分变性的构象,而不是单一形式的tRNA1val。通过添加Na+,天然结构几乎完全重新形成,但在m7G附近需要Mg2+来形成正确的构象。

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Physical studies of denatured tRNA2Glu from Escherichia coli.来自大肠杆菌的变性tRNA2Glu的物理研究。
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本文引用的文献

3
Conformational changes of transfer ribonucleic acid. Equilibrium phase diagrams.
Biochemistry. 1972 Nov 7;11(23):4358-68. doi: 10.1021/bi00773a024.
6
Structural domains of transfer RNA molecules.转运RNA分子的结构域
Science. 1976 Nov 19;194(4267):796-806. doi: 10.1126/science.790568.

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