Department of Chemical and Biological Engineering, Northwestern University, 2145 Sheridan Road, Tech E-136, Evanston, IL, 60208, USA.
Chemistry of Life Processes Institute, Northwestern University, 2170 Campus Drive, Evanston, IL, 60208, USA.
Nat Commun. 2019 Sep 2;10(1):3920. doi: 10.1038/s41467-019-11427-y.
Ribo-T is a ribosome with covalently tethered subunits where core 16S and 23S ribosomal RNAs form a single chimeric molecule. Ribo-T makes possible a functionally orthogonal ribosome-mRNA system in cells. Unfortunately, use of Ribo-T has been limited because of low activity of its original version. Here, to overcome this limitation, we use an evolutionary approach to select new tether designs that are capable of supporting faster cell growth and increased protein expression. Further, we evolve new orthogonal Ribo-T/mRNA pairs that function in parallel with, but independent of, natural ribosomes and mRNAs, increasing the efficiency of orthogonal protein expression. The Ribo-T with optimized designs is able to synthesize a diverse set of proteins, and can also incorporate multiple non-canonical amino acids into synthesized polypeptides. The enhanced Ribo-T designs should be useful for exploring poorly understood functions of the ribosome and engineering ribosomes with altered catalytic properties.
Ribo-T 是一种核糖体,其共价连接的亚基中,核心 16S 和 23S 核糖体 RNA 形成单个嵌合分子。Ribo-T 使得在细胞中构建功能上正交的核糖体-mRNA 系统成为可能。不幸的是,由于其原始版本的活性较低,Ribo-T 的使用受到限制。在这里,为了克服这一限制,我们采用进化方法来选择新的连接设计,这些设计能够支持更快的细胞生长和增加蛋白质表达。此外,我们还进化出了新的正交 Ribo-T/mRNA 对,它们与天然核糖体和 mRNA 平行但独立地发挥作用,从而提高了正交蛋白质表达的效率。经过优化设计的 Ribo-T 能够合成多种蛋白质,并且还可以将多个非规范氨基酸掺入合成的多肽中。增强型 Ribo-T 设计对于探索核糖体的未知功能以及工程化具有改变催化特性的核糖体应该是有用的。