Crary Sharon M, Kurz Jeffrey C, Fierke Carol A
Biochemistry Department, Duke University Medical Center, Durham, North Carolina 27710, USA.
RNA. 2002 Jul;8(7):933-47. doi: 10.1017/s1355838202025025.
Ribonuclease P (RNase P) is a ribonucleoprotein that requires magnesium ions to catalyze the 5' maturation of transfer RNA. To identify interactions essential for catalysis, the properties of RNase P containing single sulfur substitutions for nonbridging phosphodiester oxygens in helix P4 of Bacillus subtilis RNase P were analyzed using transient kinetic experiments. Sulfur substitution at the nonbridging oxygens of the phosphodiester bond of nucleotide U51 only modestly affects catalysis. However, phosphorothioate substitutions at A49 and G50 decrease the cleavage rate constant enormously (300-4,000-fold for P RNA and 500-15,000-fold for RNase P holoenzyme) in magnesium without affecting the affinity of pre-tRNA(Asp), highlighting the importance of this region for catalysis. Furthermore, addition of manganese enhances pre-tRNA cleavage catalyzed by B. subtilis RNase P RNA containing an Sp phosphorothioate modification at A49, as observed for Escherichia coli P RNA [Christian et al., RNA, 2000, 6:511-519], suggesting that an essential metal ion may be coordinated at this site. In contrast, no manganese rescue is observed for the A49 Sp phosphorothioate modification in RNase P holoenzyme. These differential manganese rescue effects, along with affinity cleavage, suggest that the protein component may interact with a metal ion bound near A49 in helix P4 of P RNA.
核糖核酸酶P(RNase P)是一种核糖核蛋白,需要镁离子来催化转运RNA的5'端成熟。为了确定催化所必需的相互作用,我们使用瞬态动力学实验分析了枯草芽孢杆菌RNase P的螺旋P4中含有单硫取代非桥连磷酸二酯氧的RNase P的性质。核苷酸U51的磷酸二酯键非桥连氧处的硫取代仅对催化有适度影响。然而,A49和G50处的硫代磷酸酯取代在镁存在下极大地降低了切割速率常数(P RNA降低300 - 4000倍,RNase P全酶降低500 - 15000倍),而不影响前体tRNA(Asp)的亲和力,突出了该区域对催化的重要性。此外,添加锰增强了含有A49处Sp硫代磷酸酯修饰的枯草芽孢杆菌RNase P RNA催化的前体tRNA切割,这与大肠杆菌P RNA的情况相同[克里斯蒂安等人,《RNA》,2000年,6:511 - 519],表明可能在该位点配位一个必需的金属离子。相比之下,在RNase P全酶中未观察到A49 Sp硫代磷酸酯修饰的锰挽救作用。这些不同的锰挽救作用以及亲和力切割表明,蛋白质组分可能与P RNA螺旋P4中A49附近结合的金属离子相互作用。