Warnecke J M, Fürste J P, Hardt W D, Erdmann V A, Hartmann R K
Medizinische Universität zu Lübeck, Institut für Biochemie, Germany.
Proc Natl Acad Sci U S A. 1996 Aug 20;93(17):8924-8. doi: 10.1073/pnas.93.17.8924.
To study the cleavage mechanism of bacterial Nase P RNA, we have synthesized precursor tRNA substrates carrying a single Rp- or Sp-phosphorothioate modification at the RNase P cleavage site. Both the Sp- and the Rp-diastereomer reduced the rate of processing by Escherichia coli RNase P RNA at least 1000-fold under conditions where the chemical step is rate-limiting. The Rp-modification had no effect and the Sp-modification had a moderate effect on precursor tRNA ground state binding to RNase P RNA. Processing of the Rp-diastereomeric substrate was largely restored in the presence of the "thiophilic" Cd2+ as the only divalent metal ion, demonstrating direct metal ion coordination to the (pro)-Rp substituent at the cleavage site and arguing against a specific role for Mg(2+)-ions at the pro-Sp oxygen. For the Rp-diastereomeric substrate, Hill plot analysis revealed a cooperative dependence upon [Cd2+] of nH = 1.8, consistent with a two-metal ion mechanism. In the presence of the Sp-modification, neither Mn2+ nor Cd2+ was able to restore detectable cleavage at the canonical site. Instead, the ribozyme promotes cleavage at the neighboring unmodified phosphodiester with low efficiency. Dramatic inhibition of the chemical step by both the Rp- and Sp-phosphorothioate modification is unprecedented among known ribozymes and points to unique features of transition state geometry in the RNase P RNA-catalyzed reaction.
为了研究细菌核糖核酸酶P RNA的切割机制,我们合成了在核糖核酸酶P切割位点带有单个Rp -或Sp -硫代磷酸酯修饰的前体tRNA底物。在化学步骤为限速步骤的条件下,Sp -和Rp -非对映异构体均使大肠杆菌核糖核酸酶P RNA的加工速率降低了至少1000倍。Rp -修饰对前体tRNA与核糖核酸酶P RNA的基态结合没有影响,而Sp -修饰有中等程度的影响。在仅存在“亲硫性”Cd2 +作为唯一二价金属离子的情况下,Rp -非对映异构体底物的加工在很大程度上得以恢复,这表明金属离子直接与切割位点的(原)-Rp取代基配位,并且反对Mg(2 +)离子在原-Sp氧上起特定作用。对于Rp -非对映异构体底物,希尔图分析显示对[Cd2 +]的协同依赖性,nH = 1.8,这与双金属离子机制一致。在存在Sp -修饰的情况下,Mn2 +和Cd2 +均无法恢复在标准位点的可检测切割。相反,核酶以低效率促进相邻未修饰磷酸二酯键的切割。Rp -和Sp -硫代磷酸酯修饰对化学步骤的显著抑制在已知核酶中是前所未有的,这表明核糖核酸酶P RNA催化反应中过渡态几何结构具有独特特征。