Chen Yuda, Tang Juan, Wang Lushun, Tian Zeru, Cardenas Adam, Fang Xinlei, Chatterjee Abhishek, Xiao Han
Department of Chemistry, Rice University, 6100 Main Street, Houston, Texas, 77005. U.S.A.
Department of Chemistry, Boston College, 2609 Beacon Street, 246B Merkert Chemistry Center, Chestnut Hill, MA, 02467, U.S.A.
Chem. 2020 Oct 8;6(10):2717-2727. doi: 10.1016/j.chempr.2020.07.013. Epub 2020 Aug 12.
While most organisms utilize 20 canonical amino acid building blocks for protein synthesis, adding additional candidates to the amino acid repertoire can greatly facilitate the investigation and manipulation of protein structures and functions. In this study, we report the generation of completely autonomous organisms with a 21 ncAA, 5-hydroxytryptophan (5HTP). Like 20 canonical amino acids, 5-hydroxytryptophan can be biosynthesized from simple carbon sources and is subsequently incorporated into proteins in response to the amber stop codon. Using this unnatural organism, we have prepared a single-chain immunoglobulin variable fragment conjugated with a fluorophore and demonstrated the utility of these autonomous cells to monitor oxidative stress. Creation of this and other cells containing the 21 amino acid will provide an opportunity to generate proteins and organisms with novel activities, as well as to determine the evolutionary consequences of using additional amino acid buildings.
虽然大多数生物体利用20种标准氨基酸构建块进行蛋白质合成,但在氨基酸库中添加额外的候选氨基酸可以极大地促进对蛋白质结构和功能的研究与操纵。在本研究中,我们报告了具有21种非天然氨基酸(5-羟色氨酸,5HTP)的完全自主生物体的产生。与20种标准氨基酸一样,5-羟色氨酸可以从简单碳源生物合成,随后响应琥珀色终止密码子而掺入蛋白质中。利用这种非天然生物体,我们制备了与荧光团偶联的单链免疫球蛋白可变片段,并证明了这些自主细胞在监测氧化应激方面的实用性。创建这种以及其他含有21种氨基酸的细胞将为产生具有新活性的蛋白质和生物体提供机会,同时也有助于确定使用额外氨基酸构建块的进化后果。