Toward life with a 19-amino acid alphabet through generative artificial intelligence design.

Liu, Liyuan; Rochereau, Charlotte; Kozlov, Simon; Urtecho, Guillaume; Liu, Xiaonan; Zhao, Jiahui; Wang, Jasmine; Huang, Yiming et al. · Science · 2026

basic_science · Level V

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Abstract

Because all known living organisms are made from at least 20 canonical amino acids, the feasibility of life using a more simplified alphabet remains unclear. In this work, we leveraged computational design and synthetic biology to explore building a cell from a 19-amino acid alphabet. Initial analyses suggested that isoleucine (Ile) may be dispensable, which we confirmed by directly replacing Ile residues in essential proteins in <i>Escherichia coli</i>. Critically, protein language models and structure-based models were necessary to redesign functional Ile-less proteins in most cases. We systematically replaced all 382 Ile residues from the ribosome and combined 21 redesigned subunits at a native genomic locus to produce a viable, evolutionarily stable cell. This work provides a roadmap to create the first 19-amino acid organism since early evolution.

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