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Rh(phen)2phi3+对tRNA三级结构的识别,一种用于RNA结构-功能图谱绘制的新试剂。

Recognition of tertiary structure in tRNAs by Rh(phen)2phi3+, a new reagent for RNA structure-function mapping.

作者信息

Chow C S, Behlen L S, Uhlenbeck O C, Barton J K

机构信息

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena 91125.

出版信息

Biochemistry. 1992 Feb 4;31(4):972-82. doi: 10.1021/bi00119a005.

Abstract

With photoactivation Rh(phen)2phi3+ promotes strand cleavage at sites of tertiary interaction in tRNA. The rhodium complex, which binds double-helical DNA by intercalation in the major groove, yields no cleavage in double-helical regions of the RNA or in unstructured single-stranded regions. Instead, Rh(phen)2phi3+ appears to target regions which are structured so that the major groove is open and accessible for stacking with the complex, as occurs where bases are triply bonded. So as to examine the specificity of this novel reagent and to evaluate its use in probing structural changes in RNAs, cleavage studies have been conducted on two structurally characterized tRNAs, tRNA(Phe) and tRNA(Asp) from yeast, the unmodified yeast tRNA(Phe) transcript, and a chemically modified tRNA(Phe), as well as on a series of tRNA(Phe) mutants. On tRNA(Phe) strong cleavage is observed at residues G22, G45, U47, psi 55, and U59; weaker cleavage is observed at A44, m7G46, and C48. On tRNA(Asp) cleavage is found at residues A21 through G26, psi 32, and U48, with minor cleavage apparent at A44, G45, A46, psi 55, U59, and U60. There is a striking similarity in cleavage observed on these tRNAs, and the sites of cleavage mark regions of tertiary folding. Cleavage on the unmodified tRNA(Phe) transcript resembles closely that found on native yeast tRNA(Phe), but additional sites, primarily in the anticodon loop and stem, are evident. The results indicate that globally the structures containing or lacking the modified bases appear to be the same; the differences in cleavage observed may reflect a loosening or alteration in the structure due to the absence of the modified bases. Cleavage results on mutants of tRNA(Phe) illustrate Rh(phen)2phi3+ as a sensitive probe in characterizing tRNA tertiary structure. Results are consistent with other assays for structural or functional changes. Uniquely, Rh(phen)2phi3+ appears to target directly sites of tertiary interaction. Cleavage results on mutants which involve base changes within the triply bounded region of the molecule indicate that it is the structure of the triply bonded array rather than the individual nucleotides which are being targeted. Chemical modification to promote selective depurination of the third base (m7G46) involved in the triple in the folded, native tRNA leads to the reduction of cleavage by the metal complex; this result shows directly the importance of the stacked triple base structure for recognition by the metal complex.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

通过光活化,铑(Ⅱ)菲咯啉三联吡啶配合物(Rh(phen)2phi3+)可促进tRNA三级相互作用位点的链断裂。这种通过插入到大沟中与双链DNA结合的铑配合物,在RNA的双链区域或无结构的单链区域不会产生链断裂。相反,Rh(phen)2phi3+似乎靶向具有特定结构的区域,这些区域的大沟是开放的,可与该配合物进行堆积,就像碱基形成三键的情况一样。为了研究这种新型试剂的特异性,并评估其在探测RNA结构变化中的应用,我们对两种结构已明确的tRNA(来自酵母的tRNA(Phe)和tRNA(Asp))、未修饰的酵母tRNA(Phe)转录本、一种化学修饰的tRNA(Phe)以及一系列tRNA(Phe)突变体进行了切割研究。在tRNA(Phe)上,在G22、G45、U47、ψ55和U59位点观察到强烈的切割;在A44、m7G46和C48位点观察到较弱的切割。在tRNA(Asp)上,在A21至G26、ψ32和U48位点发现切割,在A44、G45、A46、ψ55、U59和U60位点有轻微切割。在这些tRNA上观察到的切割有显著的相似性,切割位点标记了三级折叠区域。未修饰的tRNA(Phe)转录本上的切割与天然酵母tRNA(Phe)上的切割非常相似,但在反密码子环和茎中主要有额外的切割位点。结果表明,总体而言,含有或缺乏修饰碱基的结构似乎是相同的;观察到的切割差异可能反映了由于缺乏修饰碱基而导致的结构松弛或改变。tRNA(Phe)突变体的切割结果表明Rh(phen)2phi3+是表征tRNA三级结构的灵敏探针。结果与其他结构或功能变化的检测方法一致。独特的是,Rh(phen)2phi3+似乎直接靶向三级相互作用位点。对分子三键区域内涉及第三个碱基(m7G46)的选择性脱嘌呤进行化学修饰,导致金属配合物的切割减少;这一结果直接表明了堆积的三碱基结构对于金属配合物识别的重要性。(摘要截于400字)

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