Department of Chemistry, University of Florida, Gainesville, FL 32603, USA.
Nucleic Acids Res. 2019 Feb 20;47(3):1451-1467. doi: 10.1093/nar/gky1162.
RNA processing by ribonucleases and RNA modifying enzymes often involves sequential reactions of the same enzyme on a single precursor transcript. In Escherichia coli, processing of polycistronic tRNA precursors involves separation into individual pre-tRNAs by one of several ribonucleases followed by 5' end maturation by ribonuclease P. A notable exception are valine and lysine tRNAs encoded by three polycistronic precursors that follow a recently discovered pathway involving initial 3' to 5' directional processing by RNase P. Here, we show that the dicistronic precursor containing tRNAvalV and tRNAvalW undergoes accurate and efficient 3' to 5' directional processing by RNase P in vitro. Kinetic analyses reveal a distributive mechanism involving dissociation of the enzyme between the two cleavage steps. Directional processing is maintained despite swapping or duplicating the two tRNAs consistent with inhibition of processing by 3' trailer sequences. Structure-function studies identify a stem-loop in 5' leader of tRNAvalV that inhibits RNase P cleavage and further enforces directional processing. The results demonstrate that directional processing is an intrinsic property of RNase P and show how RNA sequence and structure context can modulate reaction rates in order to direct precursors along specific pathways.
核糖核酸酶和 RNA 修饰酶的 RNA 加工通常涉及同一种酶在单个前体转录本上的顺序反应。在大肠杆菌中,多顺反子 tRNA 前体的加工涉及通过几种核糖核酸酶中的一种将其分离成单个前 tRNA,然后由核糖核酸酶 P 进行 5'端成熟。一个值得注意的例外是由三个多顺反子前体编码的缬氨酸和赖氨酸 tRNA,它们遵循最近发现的途径,涉及 RNase P 的初始 3'到 5'方向加工。在这里,我们表明,含有 tRNAvalV 和 tRNAvalW 的二顺反子前体在体外通过 RNase P 进行准确且高效的 3'到 5'方向加工。动力学分析揭示了一种分配机制,涉及酶在两个切割步骤之间的解离。尽管交换或复制两个 tRNA,方向加工仍能保持,这与 3'尾部序列对加工的抑制一致。结构功能研究鉴定了 tRNAvalV 5' 前导序列中的茎环结构,该结构抑制 RNase P 的切割,并进一步强制进行定向加工。结果表明,定向加工是 RNase P 的固有特性,并展示了 RNA 序列和结构环境如何调节反应速率,以便将前体沿特定途径引导。