Hydroxylation of a conserved tRNA modification establishes non-universal genetic code in echinoderm mitochondria

作者:Nagao Asuteka; Ohara Mitsuhiro; Miyauchi Kenjyo; Yokobori Shin ichi; Yamagishi Akihiko; Watanabe Kimitsuna; Suzuki Tsutomu
来源:Nature Structural & Molecular Biology, 2017, 24(9): 778-+.
DOI:10.1038/nsmb.3449

摘要

The genetic code is not frozen but still evolving, which can result in the acquisition of 'dialectal' codons that deviate from the universal genetic code. RNA modifications in the anticodon region of tRNAs play a critical role in establishing such non-universal genetic codes. In echinoderm mitochondria, the AAA codon specifies asparagine instead of lysine. By analyzing mitochondrial (mt-) tRNA(Lys) isolated from the sea urchin (Mesocentrotus nudus), we discovered a novel modified nucleoside, hydroxy-N-6-threonylcarbamoyladenosine (ht(6)A), 3' adjacent to the anticodon (position 37). Biochemical analysis revealed that ht(6)A37 has the ability to prevent mt-tRNA(Lys) from misreading AAA as lysine, thereby indicating that hydroxylation of N-6-threonylcarbamoyladenosine (t(6)A) contributes to the establishment of the non-universal genetic code in echinoderm mitochondria.

  • 出版日期2017-9