Armbruster D W, Daniels C J
Department of Microbiology, Ohio State University, Columbus, Ohio 43210, USA.
J Biol Chem. 1997 Aug 8;272(32):19758-62. doi: 10.1074/jbc.272.32.19758.
We have investigated the requirements for mature tRNA structure in the in vivo splicing of the Haloferax volcanii, intron-containing tRNATrp RNA. A partial tRNATrp gene, which contained only the anticodon stem-loop region of the mature tRNA, was fused to a carrier yeast tRNA gene for expression in H. volcanii. Transcripts from this hybrid gene were found to be processed by endonuclease and ligase at the tRNATrp exon-intron boundaries. These results verify that the substrate recognition properties of the halobacterial endonuclease observed in vitro reflect the properties of this enzyme in vivo, namely that mature tRNA structure is not essential for recognition by the endonuclease. The independence of these reactions on mature tRNA provides further support for a relationship between archaeal tRNA and rRNA intron-processing systems and highlight a difference in the substrate recognition properties between the archaeal and eucaryal processing systems. The significance of these differences is discussed in light of the observation that the tRNA endonucleases of these organisms are related.
我们研究了嗜盐栖热菌(Haloferax volcanii)含内含子的tRNATrp RNA在体内剪接过程中对成熟tRNA结构的要求。一个仅包含成熟tRNA反密码子茎环区域的部分tRNATrp基因,与一个载体酵母tRNA基因融合,以便在嗜盐栖热菌中表达。发现来自该杂交基因的转录本在tRNATrp外显子 - 内含子边界处被内切核酸酶和连接酶加工。这些结果证实,体外观察到的嗜盐细菌内切核酸酶的底物识别特性反映了该酶在体内的特性,即成熟tRNA结构对于内切核酸酶的识别不是必需的。这些反应对成熟tRNA的独立性为古细菌tRNA和rRNA内含子加工系统之间的关系提供了进一步支持,并突出了古细菌和真核生物加工系统在底物识别特性上的差异。鉴于观察到这些生物体的tRNA内切核酸酶具有相关性,讨论了这些差异的意义。