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5-氟尿嘧啶取代对嗜热四膜虫核糖体RNA自我剪接活性的影响。

Effect of 5-fluorouracil substitution on the self-splicing activity of Tetrahymena ribosomal RNA.

作者信息

Danenberg P V, Shea L C, Danenberg K

机构信息

Department of Biochemistry, University of Southern California School of Medicine, Los Angeles 90033.

出版信息

Cancer Res. 1990 Mar 15;50(6):1757-63.

PMID:2407343
Abstract

Recent studies from several laboratories have suggested that the anticancer drug-5-fluorouracil (FUra) promotes abnormal splicing of precursor RNA molecules. In order to determine the effects of FUra on the chemistry of RNA splicing, we studied the splicing reaction of FUra-containing Tetrahymena rRNA [(FUra) RNA], a Group I self-splicing system having one intron [intervening sequence (IVS)] and two exons. When subjected to splicing conditions, the (FUra) precursor RNA gave all of the normal splicing products, ligated exons, IVS, circulation IVS (C-IVS), and the hydrolyzed circle (L-19 IVS) as well as other hydrolysis side products. No abnormal products indicative of missplicing were observed at pH 7.5. However, the presence of FUra in the RNA decreased the rates and extents of formation of all of the product species. At pH 7.5, the rate of ligated exon formation of (FUra) RNA was inhibited 3-fold and the maximum yield of ligated exons was 50% of normal. Substitution with FUra inhibited the rate of formation of C-IVS about 2-fold, while the extent of formation of this product was decreased by more than 3-fold compared to uracil-containing RNA [(Ura) RNA]. The circularization of (Ura) IVS remained constant to pH 9 and then increased, while that of (FUra) IVS declined abruptly after pH 7.3, indicating that ionization of the FUra residues of (FUra) RNA abolishes its catalytic activity. A temperature dependence experiment showed that the circularization activity of (FUra) IVS was lost at a temperature 15 degrees C lower than that of the (Ura) IVS. The labile phosphodiester bond of the (FUra) C-IVS was more stable to hydrolysis than was that of the (Ura) C-IVS at all pH values. The data suggest that a major effect of FUra substitution is to destabilize the active conformation of RNA because of weaker base pairing between FUra and adenine owing to partial ionization of the FUra residues.

摘要

来自多个实验室的近期研究表明,抗癌药物5-氟尿嘧啶(FUra)会促进前体RNA分子的异常剪接。为了确定FUra对RNA剪接化学过程的影响,我们研究了含FUra的嗜热四膜虫rRNA [(FUra)RNA]的剪接反应,这是一个具有一个内含子[间隔序列(IVS)]和两个外显子的I类自我剪接系统。在进行剪接条件处理时,(FUra)前体RNA产生了所有正常的剪接产物,即连接的外显子、IVS、循环IVS(C-IVS)以及水解环(L-19 IVS)以及其他水解副产物。在pH 7.5时未观察到指示错配剪接的异常产物。然而,RNA中FUra的存在降低了所有产物种类的形成速率和程度。在pH 7.5时,(FUra)RNA连接外显子形成的速率受到3倍抑制,连接外显子的最大产量为正常产量的50%。用FUra替代抑制C-IVS形成速率约2倍,而与含尿嘧啶的RNA [(Ura)RNA]相比,该产物的形成程度降低了3倍以上。(Ura)IVS的环化在pH 9之前保持恒定,然后增加,而(FUra)IVS的环化在pH 7.3之后急剧下降,这表明(FUra)RNA中FUra残基的离子化消除了其催化活性。温度依赖性实验表明,(FUra)IVS的环化活性在比(Ura)IVS低15摄氏度的温度下丧失。在所有pH值下,(FUra)C-IVS不稳定的磷酸二酯键比(Ura)C-IVS的更耐水解。数据表明,FUra替代的主要作用是由于FUra残基的部分离子化导致FUra与腺嘌呤之间的碱基配对较弱,从而使RNA的活性构象不稳定。

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