Department of Chemistry and Biochemistry and Center for RNA Biology, The Ohio State University, Columbus, OH 43210, USA.
Nucleic Acids Res. 2013 Feb 1;41(3):1885-94. doi: 10.1093/nar/gks1242. Epub 2012 Dec 14.
The additional G(-1) nucleotide on tRNA(His) is a nearly universal feature that specifies tRNA(His) identity in all three domains of life. In eukaryotes, the G(-1) identity element is obtained by a post-transcriptional pathway, through the unusual 3'-5' polymerase activity of the highly conserved tRNA(His) guanylyltransferase (Thg1) enzyme, and no examples of eukaryotic histidyl-tRNAs that lack this essential element have been identified. Here we report that the eukaryote Acanthamoeba castellanii lacks the G(-1) identity element on its tRNA(His), consistent with the lack of a gene encoding a bona fide Thg1 ortholog in the A. castellanii genome. Moreover, the cytosolic histidyl-tRNA synthetase in A. castellanii exhibits an unusual tRNA substrate specificity, efficiently aminoacylating tRNA(His) regardless of the presence of G(-1). A. castellanii does contain two Thg1-related genes (encoding Thg1-like proteins, TLPs), but the biochemical properties we associate here with these proteins are consistent with a function for these TLPs in separate pathways unrelated to tRNA(His) metabolism, such as mitochondrial tRNA repair during 5'-editing.
tRNA(His)上的额外 G(-1)核苷酸是一个几乎普遍的特征,它指定了所有三个生命领域中 tRNA(His)的身份。在真核生物中,G(-1)身份元素是通过一种转录后途径获得的,通过高度保守的 tRNA(His)鸟苷转移酶 (Thg1) 酶的异常 3'-5'聚合酶活性,并且没有发现缺乏这种必需元件的真核组氨酰-tRNA 的例子。在这里,我们报告说,真核生物 Acanthamoeba castellanii 的 tRNA(His)上缺乏 G(-1)身份元素,这与 A. castellanii 基因组中缺乏编码真正 Thg1 同源物的基因一致。此外,A. castellanii 的细胞质组氨酰-tRNA 合成酶表现出异常的 tRNA 底物特异性,无论是否存在 G(-1),都能有效地氨酰化 tRNA(His)。A. castellanii 确实含有两个 Thg1 相关基因(编码 Thg1 样蛋白,TLPs),但我们在这里与之相关的生化特性与这些蛋白在与 tRNA(His)代谢无关的单独途径中的功能一致,例如在 5'-编辑期间进行线粒体 tRNA 修复。