Pigula Michael L, Ban Yahui, Schultz Peter G
Department of Chemistry, Scripps Research, 10550 North Torrey Pines Rd, La Jolla, California 92037, United States.
ACS Synth Biol. 2024 Dec 20;13(12):4175-4179. doi: 10.1021/acssynbio.4c00630. Epub 2024 Dec 4.
Nature has evolved to exclusively use a genetic code consisting of triplet nucleotide codons. The translation system, however, is known to be compatible with 4-nucleotide frameshift or quadruplet codons. In this study, we begin to explore the possibility of a genome made up entirely of quadruplet codons using the minimal mitochondrial genome of as a model system. We demonstrate that mitochondrial tryptophanyl- and tyrosyl-tRNAs with modified anticodons effectively suppress mutant genes containing a TAG stop or TAGA quadruplet codon, leading to the production of full-length COX3 and a respiratory-competent phenotype. This work provides a method for introducing heterologous tRNAs into the yeast mitochondria for genetic engineering applications and serves as a starting point for the development of a quadruplet codon genetic code.
自然界进化出了专门使用由三联体核苷酸密码子组成的遗传密码。然而,已知翻译系统与四核苷酸移码或四联体密码子兼容。在本研究中,我们开始以[具体生物]的最小线粒体基因组为模型系统,探索完全由四联体密码子组成的基因组的可能性。我们证明,具有修饰反密码子的线粒体色氨酰 - 和酪氨酰 - tRNA能有效抑制含有TAG终止密码子或TAGA四联体密码子的突变基因,从而产生全长COX3并表现出呼吸功能正常的表型。这项工作为将异源tRNA引入酵母线粒体用于基因工程应用提供了一种方法,并为四联体密码子遗传密码的开发奠定了基础。