Chow C S, Hartmann K M, Rawlings S L, Huber P W, Barton J K
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena 91125.
Biochemistry. 1992 Apr 7;31(13):3534-42. doi: 10.1021/bi00128a030.
The three-dimensional folding of Xenopus oocyte 5S rRNA has been examined using the coordination complex Rh(phen)2phi3+ (phen = phenanthroline; phi = phenanthrenequinone diimine) as a structural probe. Rh(phen)2phi3+ binds neither double-helical RNA nor unstructured single-stranded regions of RNA. Instead, the complex targets through photoactivated cleavage sites of tertiary interaction which are open in the major groove and accessible to stacking. The sites targeted by the rhodium complex have been mapped on the wild-type Xenopus oocyte RNA, on a truncated RNA representing the arm of the molecule comprised of helix IV-loop E-helix V, and on several single-nucleotide mutants of the 5S rRNA. On the wild-type 5S rRNA, strong cleavage is found at residues U73, A74, A101, and U102 in the E loop and U80 and G81 in helix IV; additional sites are evident at A22 and A56 in the B loop, C29 and A32 in helix III, and C34, C39, A42, and C44 in the C loop. Given the similarity observed in cleavage between the full 5S RNA and the truncated fragment as well as the absence of any long-range effects on cleavage in mutant RNAs, the results do not support models which involve long-range tertiary interactions. Cleavage results with Rh(phen)2phi3+ do, however, indicate that the apposition of several noncanonical bases as well as stem--loop junctions may result in intimately stacked structures with opened major grooves. In particular, on the basis of cleavage results on mutant RNAs, both loops C and E represent structures where the strands constituting each loop are not independent of one another but are intrinsically structured.(ABSTRACT TRUNCATED AT 250 WORDS)
利用配位化合物铑(菲咯啉)₂菲醌二亚胺³⁺(菲咯啉 = 菲罗啉;菲醌二亚胺 = 菲醌二亚胺)作为结构探针,研究了非洲爪蟾卵母细胞5S rRNA的三维折叠。铑(菲咯啉)₂菲醌二亚胺³⁺既不与双链RNA结合,也不与RNA的无结构单链区域结合。相反,该复合物通过三级相互作用的光活化切割位点靶向,这些位点在大沟中开放且可进行堆积。铑复合物靶向的位点已在野生型非洲爪蟾卵母细胞RNA、代表由螺旋IV - 环E - 螺旋V组成的分子臂的截短RNA以及5S rRNA的几个单核苷酸突变体上进行了定位。在野生型5S rRNA上,在E环的U73、A74、A101和U102残基以及螺旋IV的U80和G81处发现强烈切割;在B环的A22和A56、螺旋III的C29和A32以及C环的C34、C39、A42和C44处也有额外的切割位点。鉴于在完整5S RNA和截短片段之间观察到的切割相似性以及突变RNA中切割不存在任何长程效应,结果不支持涉及长程三级相互作用的模型。然而,铑(菲咯啉)₂菲醌二亚胺³⁺的切割结果确实表明,几个非规范碱基以及茎 - 环连接的并列可能导致具有开放大沟的紧密堆积结构。特别是,根据突变RNA的切割结果,环C和E都代表这样的结构,即构成每个环的链彼此不独立,而是具有内在结构。(摘要截短于250字)