Christiansen J, Kofod M, Nielsen F C
Department of Biological Chemistry, University of Copenhagen, Denmark.
Nucleic Acids Res. 1994 Dec 25;22(25):5709-16. doi: 10.1093/nar/22.25.5709.
Insulin-like growth factor II (IGF-II) mRNAs are cleaved by an endonucleolytic event in a conserved part of their 3' untranslated region that is predicted to exhibit a complex higher-order RNA structure. In the present study, we have examined the putative secondary structures of in vitro transcripts from the conserved part of human and rat mRNAs by enzymatic and chemical probing. The results show that the cleavage site is situated between two highly structured domains. The upstream domain consists of two large hairpins, whereas the downstream domain is guanosine-rich. The guanosine-rich domain adopts a compact unimolecular conformation in Na+ or K+ but not in Li+, and it completely arrests reverse transcription in K+ but only partially in Na+, indicating the presence of an intramolecular guanosine quadruplex. The flanking higher-order structures may ensure that the cleavage site is not sequestered in stable RNA structures, thus allowing interactions with RNA or proteins at posttranscriptional stages of IGF-II expression.
胰岛素样生长因子II(IGF-II)的信使核糖核酸(mRNAs)在其3'非翻译区的一个保守部分通过内切核酸酶作用被切割,该区域预计会呈现出复杂的高阶RNA结构。在本研究中,我们通过酶促和化学探测研究了来自人和大鼠信使核糖核酸保守部分的体外转录本的假定二级结构。结果表明,切割位点位于两个高度结构化的结构域之间。上游结构域由两个大的发夹结构组成,而下游结构域富含鸟苷。富含鸟苷的结构域在Na+或K+中采用紧凑的单分子构象,但在Li+中则不然,并且它在K+中完全阻止逆转录,但在Na+中仅部分阻止,表明存在分子内鸟苷四链体。侧翼的高阶结构可能确保切割位点不会被隔离在稳定的RNA结构中,从而允许在IGF-II表达的转录后阶段与RNA或蛋白质相互作用。