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Thiophilic metal ion rescue of phosphorothioate interference within the Tetrahymena ribozyme P4-P6 domain.

机译:嗜盐金属离子拯救四膜虫核酶P4-P6结构域内的硫代磷酸酯干扰。

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摘要

Divalent metal ions are essential for the folding and catalytic activities of many RNAs. A commonly employed biochemical technique to identify metal-binding sites in RNA is the rescue of Rp alpha-phosphorothioate (PS) interference by the addition of soft divalent metal ions. To access the ability of such experiments to accurately identify metal-ion coordinations within a complex RNA fold, we report metal-rescue results from the Tetrahymena group I intron P4-P6 domain, where the location and coordination of five divalent metal ions have been determined by X-ray crystallography [J.H. Cate et al., Nat Struct Biol, 1997, 4:553]. We used a native gel mobility-shift to assay for P4-P6 folding in the presence of various divalent metal ions, and found that even moderate concentrations of Mn2+ (> or =0.5 mM) can rescue PS interference at sites that do not coordinate metal ions within the P4-P6 crystal structure. To control for such effects, 2'-deoxynucleotide interference was used to titrate the Mn2+ concentration to a level that produces metal-ion-specific rescue (0.3 mM). This concentration of Mn2+ specifically rescued four of the six metal-dependent phosphorothioate effects within the RNA domain, including PS interference resulting from outer-sphere coordination to the metals. Both sites that were not specifically rescued make inner-sphere metal-ion coordinations. Cd2+ and Zn2+ afforded rescue at a smaller subset of the six metal-specific PS sites, though again phosphates making outer-sphere coordinations to metal ions were rescued preferentially. These data on P4-P6 domain folding reinforce the need for caution when interpreting metal-rescue experiments.
机译:二价金属离子对于许多RNA的折叠和催化活性至关重要。识别RNA中金属结合位点的常用生化技术是通过添加软的二价金属离子来挽救Rpα-硫代磷酸酯(PS)干扰。为了获得此类实验准确识别复杂RNA折叠内金属离子配位的能力,我们报告了四膜虫I组内含子P4-P6域的金属拯救结果,其中五个二价金属离子的位置和配位已确定通过X射线晶体学[JH Cate等,Nat Struct Biol,1997,4:553]。我们使用天然的凝胶迁移率位移来分析存在各种二价金属离子时的P4-P6折叠,发现即使中等浓度的Mn2 +(>或= 0.5 mM)也可以挽救不与金属配位的位点的PS干扰。离子在P4-P6晶体结构中。为了控制这种影响,使用2'-脱氧核苷酸干扰物将Mn2 +浓度滴定至可产生金属离子特异性拯救(0.3 mM)的水平。 Mn2 +的这种浓度可专门挽救RNA结构域内六种金属依赖性硫代磷酸酯效应中的四种,包括外球对金属的配位作用引起的PS干扰。未被专门营救的两个地点都进行了内球金属离子的配位。 Cd2 +和Zn2 +在六个特定于金属的PS位点的较小子集提供了拯救,尽管与金属离子形成外球配位的磷酸盐也被优先拯救。在解释金属救援实验时,有关P4-P6域折叠的这些数据更加需要谨慎。

著录项

  • 期刊名称 RNA
  • 作者

    S Basu; S A Strobel;

  • 作者单位
  • 年(卷),期 1999(5),11
  • 年度 1999
  • 页码 1399–1407
  • 总页数 10
  • 原文格式 PDF
  • 正文语种
  • 中图分类 分子生物学;
  • 关键词

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