Li Xiang, Liu Chang C
Department of Biomedical Engineering, University of California at Irvine, 3120 Natural Sciences II, Irvine, CA 92697 (USA).
Chembiochem. 2014 Nov 3;15(16):2335-41. doi: 10.1002/cbic.201402159. Epub 2014 Aug 29.
Substantial efforts in the past decade have resulted in the systematic expansion of genetic codes, allowing for the direct ribosomal incorporation of ∼100 unnatural amino acids into bacteria, yeast, mammalian cells, and animals. Here, we illustrate the versatility of expanded genetic codes in biology and bioengineering, focusing on the application of expanded genetic codes to problems in protein, cell, synthetic, and experimental evolutionary biology. As the expanded genetic code field continues to develop, its place as a foundational technology in the whole of biological sciences will solidify.
在过去十年中付出的巨大努力已使遗传密码得到系统性扩展,从而能够将约100种非天然氨基酸直接通过核糖体掺入细菌、酵母、哺乳动物细胞及动物体内。在此,我们展示了扩展遗传密码在生物学和生物工程中的多功能性,重点关注扩展遗传密码在蛋白质、细胞、合成及实验进化生物学问题中的应用。随着扩展遗传密码领域不断发展,其作为整个生物科学基础技术的地位将得以巩固。