Mandiyan V, Boublik M
Roche Institute of Molecular Biology, Roche Research Center, Nutley, NJ 07110.
Nucleic Acids Res. 1990 Dec 11;18(23):7055-62. doi: 10.1093/nar/18.23.7055.
The secondary structure of HeLa 18S rRNA was investigated by a combination of chemical and enzymatic probing techniques. Using four chemical reagents (DMS*, kethoxal, DEPC and CMCT) which react specifically with unpaired bases and two nucleases (RNase T1 and cobra venom nuclease) which cleave the ribopolynucleotides at unpaired guanines and helical segments, we have analyzed the secondary structure of the 5' domain of 18S rRNA isolated from HeLa 40S ribosomal subunits. The sites at which chemical modifications and nuclease cleavages occurred were identified by primer extension using synthetic deoxyoligonucleotides and reverse transcriptase. These studies led to the deduction of an intra-RNA pairing pattern from the available secondary structure models based on comparative sequence analysis. Apart from the general canonical pairing we have identified noncanonical U-U, G-A, A-G, A-C, C-A and G-G pairing in HeLa 18S rRNA. The differential reactivity of bases to chemical reagents has enabled us to predict the possible configuration of these bases in some of the noncanonical pairing. The absence of chemical reactivities and cobra venom nuclease sensitivity in the terminal loops of helices 6 and 12 indicate a tertiary interaction unique to HeLa 18S rRNA. We have confirmed the existence of the complex tertiary folding recently proposed (Gutell and Woese 1990 Proc. Natl. Acad. Sci. 87, 663-667) for the universally conserved helix 19 in HeLa 18S rRNA. The complementarity of chemical modifications and enzymatic cleavages provided experimental evidence for the proposal of a model structure for the 655 nucleotides of the 5' domain of HeLa 18S rRNA.
通过化学和酶促探测技术相结合的方法,对HeLa 18S rRNA的二级结构进行了研究。我们使用了四种与未配对碱基特异性反应的化学试剂(硫酸二甲酯*、乙二醛、焦碳酸二乙酯和N - 环己基 - N′ - (2 - 吗啉乙基)碳二亚胺甲基对甲苯磺酸盐)以及两种在未配对鸟嘌呤和螺旋片段处切割核糖多核苷酸的核酸酶(核糖核酸酶T1和眼镜蛇毒核酸酶),分析了从HeLa 40S核糖体亚基分离出的18S rRNA 5′结构域的二级结构。通过使用合成脱氧寡核苷酸和逆转录酶进行引物延伸,确定了发生化学修饰和核酸酶切割的位点。这些研究基于比较序列分析,从现有的二级结构模型中推导出了RNA内部的配对模式。除了常见的标准配对外,我们还在HeLa 18S rRNA中鉴定出了非标准的U - U、G - A、A - G、A - C、C - A和G - G配对。碱基对化学试剂的不同反应性使我们能够预测这些碱基在一些非标准配对中的可能构象。螺旋6和12的末端环中缺乏化学反应性和对眼镜蛇毒核酸酶的敏感性,表明HeLa 18S rRNA具有独特的三级相互作用。我们证实了最近提出的(Gutell和Woese,《美国国家科学院院刊》1990年第87卷,663 - 667页)HeLa 18S rRNA中普遍保守的螺旋19存在复杂的三级折叠。化学修饰和酶促切割的互补性为HeLa 18S rRNA 5′结构域的655个核苷酸的模型结构提议提供了实验证据。