Lee K M, Marshall A G
Department of Biochemistry, Ohio State University, Columbus 43210.
Biochemistry. 1987 Aug 25;26(17):5534-40. doi: 10.1021/bi00391a048.
Base-pair sequences for 5S and 5.8S RNAs are not readily extracted from proton homonuclear nuclear Overhauser enhancement (NOE) connectivity experiments alone, due to extensive peak overlap in the downfield (11-15 ppm) proton NMR spectrum. In this paper, we introduce a new method for base-pair proton peak assignment for ribosomal RNAs, based upon the distance-dependent broadening of the resonances of base-pair protons spatially proximal to a paramagnetic group. Introduction of a nitroxide spin-label covalently attached to the 3'-terminal ribose provides an unequivocal starting point for base-pair hydrogen-bond proton NMR assignment. Subsequent NOE connectivities then establish the base-pair sequence for the terminal stem of a 5S RNA. Periodate oxidation of yeast 5S RNA, followed by reaction with 4-amino-2,2,6,6-tetramethylpiperidinyl-1-oxy (TEMPO-NH2) and sodium borohydride reduction, produces yeast 5S RNA specifically labeled with a paramagnetic nitroxide group at the 3'-terminal ribose. Comparison of the 500-MHz 1H NMR spectra of native and 3'-terminal spin-labeled yeast 5S RNA serves to identify the terminal base pair (G1 . C120) and its adjacent base pair (G2 . U119) on the basis of their proximity to the 3'-terminal spin-label. From that starting point, we have then identified (G . C, A . U, or G . U) and sequenced eight of the nine base pairs in the terminal helix via primary and secondary NOE's.
由于在低场(11 - 15 ppm)质子核磁共振谱中存在广泛的峰重叠,仅从质子同核核Overhauser增强(NOE)连接实验中不容易提取5S和5.8S RNA的碱基对序列。在本文中,我们介绍了一种基于与顺磁基团在空间上接近的碱基对质子共振的距离依赖性展宽来对核糖体RNA进行碱基对质子峰归属的新方法。引入共价连接到3'-末端核糖的氮氧化物自旋标记为碱基对氢键质子核磁共振归属提供了一个明确的起点。随后的NOE连接则确定了5S RNA末端茎的碱基对序列。对酵母5S RNA进行高碘酸盐氧化,然后与4-氨基-2,2,6,6-四甲基哌啶基-1-氧基(TEMPO-NH₂)反应并经硼氢化钠还原,可产生在3'-末端核糖处特异性标记有顺磁氮氧化物基团的酵母5S RNA。通过比较天然酵母5S RNA和3'-末端自旋标记酵母5S RNA的500 MHz¹H核磁共振谱,基于它们与3'-末端自旋标记的接近程度来确定末端碱基对(G1·C120)及其相邻碱基对(G2·U119)。从该起点出发,我们随后通过一级和二级NOE确定了末端螺旋中九个碱基对中的八个(G·C、A·U或G·U)并进行了测序。