Department of Biochemistry and Molecular Biology, Faculty of Agriculture and Life Science, Hirosaki University, Hirosaki 036-8561, Japan.
RNA. 2010 May;16(5):980-90. doi: 10.1261/rna.1916610. Epub 2010 Mar 26.
Trans-translation relieves a stalled translation on the bacterial ribosome by transfer-messenger RNA (tmRNA) with the help of SmpB, an essential cofactor of tmRNA. Here, we examined the role of the unstructured C-terminal tail of SmpB using an in vitro trans-translation system. It was found that truncation of the C-terminal tail or substitution of tryptophan residue at 147 in the middle of the C-terminal tail affected the activity in the early stage of trans-translation. Our investigations also revealed that the C-terminal tail is not required for the events until GTP is hydrolyzed by EF-Tu in complex with tmRNA-SmpB. A synthetic peptide corresponding to the C-terminal tail of SmpB inhibited peptidyl-transfer of alanyl-tmRNA and A-site binding of SmpB, but not GTP hydrolysis. These results suggest that the C-terminal tail has a role in the step of accommodation of alanyl-tmRNA-SmpB into the A-site. Directed hydroxyl radical probing indicated that tryptophan residue at 147 is located just downstream of the decoding center in the mRNA path when SmpB is in the A-site.
转译移位通过转移信使 RNA(tmRNA)在 SmpB 的帮助下缓解细菌核糖体上的停滞翻译,SmpB 是 tmRNA 的必需辅助因子。在这里,我们使用体外转译移位系统研究了 SmpB 无规卷曲 C 末端尾部的作用。结果发现,C 末端尾部的截断或中间 147 位色氨酸残基的取代会影响转译移位的早期阶段的活性。我们的研究还表明,在 tmRNA-SmpB 与 EF-Tu 结合并水解 GTP 之前,C 末端尾部对于事件的发生不是必需的。与 SmpB 的 C 末端尾部相对应的合成肽抑制了丙氨酰-tmRNA 的肽基转移和 SmpB 在 A 位的结合,但不抑制 GTP 水解。这些结果表明,C 末端尾部在将丙氨酰-tmRNA-SmpB 容纳到 A 位的步骤中起作用。定向羟基自由基探测表明,当 SmpB 位于 A 位时,色氨酸残基 147 位于 mRNA 路径的解码中心下游。