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探究天然和体外转录的大肠杆菌缬氨酸转移RNA之间的结构差异:稳定的碱基修饰依赖性构象的证据。

Probing structural differences between native and in vitro transcribed Escherichia coli valine transfer RNA: evidence for stable base modification-dependent conformers.

作者信息

Derrick W B, Horowitz J

机构信息

Department of Biochemistry and Biophysics, Iowa State University, Ames 50011.

出版信息

Nucleic Acids Res. 1993 Oct 25;21(21):4948-53. doi: 10.1093/nar/21.21.4948.

Abstract

Structural differences between native (modified) and in vitro transcribed (unmodified) Escherichia coli tRNA(Val) were explored by comparing their temperature-absorbance profiles as a function of magnesium ion concentration and by probing their solution conformation with single- and double-strand-specific endonucleases. In vitro transcribed tRNA(Val) has a less ordered structure as monitored by thermal melting profiles; its Tm is appreciably lower than that of native tRNA(Val) at all Mg2+ concentrations. Structure probing experiments with nuclease S1 and ribonuclease V1 show that the unmodified tRNA(Val) transcript is more susceptible to nuclease attack at low Mg2+ concentrations, particularly in the D- and T-loops, indicative of at least a partial disruption of D-loop/T-loop interactions. These experiments also provide evidence for temperature-dependent alternative conformations of the anticodon loop of native tRNA(Val). Modified nucleosides are essential for the stability of these conformers; they cannot be detected in the unmodified in vitro transcript. The observations suggest that post-transcriptional modifications in tRNA allow the adoption of unique conformations and act to stabilize those that are biologically active.

摘要

通过比较天然(修饰的)和体外转录(未修饰的)大肠杆菌tRNA(Val)的温度-吸光度曲线(作为镁离子浓度的函数),以及用单链和双链特异性核酸内切酶探测它们的溶液构象,探究了两者之间的结构差异。通过热变性曲线监测,体外转录的tRNA(Val)结构有序性较低;在所有Mg2+浓度下,其熔解温度(Tm)明显低于天然tRNA(Val)。用核酸酶S1和核糖核酸酶V1进行的结构探测实验表明,未修饰的tRNA(Val)转录本在低Mg2+浓度下更容易受到核酸酶攻击,特别是在D环和T环,这表明D环/T环相互作用至少部分被破坏。这些实验还为天然tRNA(Val)反密码子环的温度依赖性替代构象提供了证据。修饰核苷对于这些构象异构体的稳定性至关重要;在未修饰的体外转录本中无法检测到它们。这些观察结果表明,tRNA的转录后修饰允许采用独特的构象,并起到稳定那些具有生物活性构象的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e85/311411/cbb9c84ded39/nar00070-0104-a.jpg

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