Dallas A, Rycyna R, Moore P
Departments of Chemistry and Molecular Biophysics and Biochemistry, Yale University, New Haven, CT 06520-8107, USA.
Biochem Cell Biol. 1995 Nov-Dec;73(11-12):887-97. doi: 10.1139/o95-096.
A proposal is advanced for the conformation of the loop E region of prokaryotic 5S rRNAs based on spectroscopic data obtained from pAD3 RNA, a construct that includes helix IV, helix V, and loops D and E from Escherichia coli 5S rRNA. Even though loop E juxtaposes bases that cannot form Watson-Crick base pairs, it resembles an A-form double helix; its nucleotides relate to each other spectroscopically in a helix-like way and are in the anti conformation. The ends of loop E, which is palindromic, have the same conformation. Working in from either end towards the center of the loop, a closing GC is followed by a side-by-side GA and then by a reversed Hoogsteen AU, a pattern resembling that found at one end of eukaryotic loop E. The center of the loop consists of three nucleotide pairs, which appear to be an asymmetric GG pair, a Watson-Crick-like AG, and a GU stabilized by a single hydrogen bond.
基于从pAD3 RNA获得的光谱数据,提出了一种关于原核5S rRNA环E区域构象的建议。pAD3 RNA是一种构建体,包含来自大肠杆菌5S rRNA的螺旋IV、螺旋V以及环D和环E。尽管环E中相邻的碱基不能形成沃森-克里克碱基对,但它类似于A-型双螺旋;其核苷酸在光谱上以类似螺旋的方式相互关联,并且处于反式构象。环E是回文结构,其两端具有相同的构象。从环的任一端向中心研究,先是一个封闭的GC,接着是并排的GA,然后是反向的Hoogsteen AU,这种模式类似于在真核环E一端发现的模式。环的中心由三对核苷酸组成,似乎是一个不对称的GG对、一个类似沃森-克里克的AG对以及一个通过单个氢键稳定的GU对。