Hanawa-Suetsugu Kyoko, Takagi Mitsuru, Inokuchi Hachiro, Himeno Hyouta, Muto Akira
Department of Biology, Faculty of Science, Hirosaki University, Hirosaki 036-8561, Japan.
Nucleic Acids Res. 2002 Apr 1;30(7):1620-9. doi: 10.1093/nar/30.7.1620.
tmRNA has a dual function as a tRNA and an mRNA to facilitate trans-translation, in which a ribosome can switch between translation of a truncated mRNA and the tmRNA's tag sequence. SmpB is a tmRNA binding protein that has been identified to be essential for trans-translation in vivo. To further study the function of SmpB, an S30 fraction from an Escherichia coli strain, in which the set of genes for SmpB and tmRNA has been deleted from the genome, and His-tagged SmpB active in trans-translation were prepared. The SmpB-depleted S30 fraction had an ability to facilitate poly(U)-dependent tag-peptide synthesis in vitro when purified His-tagged SmpB was exogenously added together with tmRNA, although SmpB was not required for in vitro poly(U)-dependent poly(Phe) synthesis. It was also found that depletion of SmpB leads to a decrease in the level of tmRNA in the cell. In addition, SmpB considerably enhanced the aminoacylation of tmRNA by alanyl-tRNA synthetase in vitro. The aminoacylation enhancement by SmpB, the binding of SmpB to tmRNA and the effect of depletion of SmpB on the expression level of tmRNA in the cell were all affected by some mutations in the tRNA-like domain which cause a defect in ribosome binding leading to a trans-translation deficiency. These results demonstrate that, via binding to the tRNA-like domain of tmRNA, SmpB plays various roles: rescuing the tmRNA molecule from degradation in the cell, enhancing the aminoacylation of tmRNA and mediating the binding of tmRNA to ribosome.
转移信使核糖核酸(tmRNA)具有作为转运核糖核酸(tRNA)和信使核糖核酸(mRNA)的双重功能,以促进反式翻译,其中核糖体可以在截短的mRNA翻译和tmRNA的标签序列之间切换。SmpB是一种tmRNA结合蛋白,已被确定对体内反式翻译至关重要。为了进一步研究SmpB的功能,制备了来自大肠杆菌菌株的S30组分,该菌株基因组中已删除了SmpB和tmRNA的基因集,以及在反式翻译中具有活性的组氨酸标签化SmpB。当将纯化的组氨酸标签化SmpB与tmRNA一起外源添加时,缺乏SmpB的S30组分在体外具有促进多聚尿苷(poly(U))依赖性标签肽合成的能力,尽管体外多聚尿苷依赖性多聚苯丙氨酸(poly(Phe))合成不需要SmpB。还发现SmpB的缺失导致细胞中tmRNA水平的降低。此外,SmpB在体外显著增强了丙氨酰-tRNA合成酶对tmRNA的氨酰化作用。SmpB对氨酰化的增强作用、SmpB与tmRNA的结合以及SmpB缺失对细胞中tmRNA表达水平的影响均受到tRNA样结构域中一些突变的影响,这些突变导致核糖体结合缺陷,从而导致反式翻译缺陷。这些结果表明,通过与tmRNA的tRNA样结构域结合,SmpB发挥多种作用:拯救细胞中tmRNA分子免于降解、增强tmRNA的氨酰化作用以及介导tmRNA与核糖体的结合。