Medical Research Council Laboratory of Molecular Biology, Cambridge, UK.
Nat Chem. 2023 Jan;15(1):61-69. doi: 10.1038/s41557-022-01082-0. Epub 2022 Dec 22.
The direct genetically encoded cell-based synthesis of non-natural peptide and depsipeptide macrocycles is an outstanding challenge. Here we programme the encoded synthesis of 25 diverse non-natural macrocyclic peptides, each containing two non-canonical amino acids, in Syn61Δ3-derived cells; these cells contain a synthetic Escherichia coli genome in which the annotated occurrences of two sense codons and a stop codon, and the cognate transfer RNAs (tRNAs) and release factor that normally decode these codons, have been removed. We further demonstrate that pyrrolysyl-tRNA synthetase/tRNA pairs from distinct classes can be engineered to direct the co-translational incorporation of diverse alpha hydroxy acids, with both aliphatic and aromatic side chains. We define 49 engineered mutually orthogonal pairs that recognize distinct non-canonical amino acids or alpha hydroxy acids and decode distinct codons. Finally, we combine our advances to programme Syn61Δ3-derived cells for the encoded synthesis of 12 diverse non-natural depsipeptide macrocycles, which contain two non-canonical side chains and either one or two ester bonds.
直接将细胞内的基因编码用于非天然肽和环二肽的大环合成是一项极具挑战性的工作。在这里,我们在 Syn61Δ3 衍生细胞中设计了 25 种不同的非天然大环肽的编码合成,每种肽都含有两个非标准氨基酸;这些细胞包含一个合成的大肠杆菌基因组,其中两个有意义的密码子和一个终止密码子以及对应的 tRNA 和释放因子的出现位置已被删除,而这些密码子通常由它们解码。我们还进一步证明,来自不同类别的吡咯赖氨酸-tRNA 合成酶/tRNA 对可以被工程化,以指导各种α-羟基酸的共翻译掺入,这些酸具有脂肪族和芳香族侧链。我们定义了 49 个工程化的相互正交对,它们可以识别不同的非标准氨基酸或α-羟基酸,并解码不同的密码子。最后,我们结合这些进展,为 Syn61Δ3 衍生细胞设计了编码合成 12 种不同的非天然环二肽大环,这些大环含有两个非标准侧链和一个或两个酯键。