González Sebasthian Santiago, Ad Omer, Shah Bhavana, Zhang Zhongqi, Zhang Xizi, Chatterjee Abhishek, Schepartz Alanna
Department of Chemistry, University of California, Berkeley, California 94720, United States.
Department of Chemistry, Yale University, New Haven, Connecticut 06511, United States.
ACS Cent Sci. 2021 Sep 22;7(9):1500-1507. doi: 10.1021/acscentsci.1c00499. Epub 2021 Aug 31.
We report that the recently introduced commercial strain of (Vmax X2) supports robust unnatural amino acid mutagenesis, generating exceptional yields of soluble protein containing up to 5 noncanonical α-amino acids (ncAA). The isolated yields of ncAA-containing superfolder green fluorescent protein (sfGFP) expressed in Vmax X2 are up to 25-fold higher than those achieved using commercial expression strains (Top10 and BL21) and more than 10-fold higher than those achieved using two different genomically recodedstrains that lack endogenous UAG stop codons and release factor 1 and have been optimized for improved fitness and preferred growth temperature (C321.ΔA.opt and C321.ΔA.exp). In addition to higher yields of soluble protein, Vmax X2 cells also generate proteins with significantly lower levels of misincorporated natural α-amino acids at the UAG-programmed position, especially in cases where the ncAA is a moderate substrate for the chosen orthogonal aminoacyl tRNA synthetase (aaRS). This increase in fidelity implies that the use of Vmax X2 cells as the expression host can obviate the need for time-consuming directed evolution experiments to improve the selectivity of an aaRS toward highly desired but suboptimal ncAA substrates.
我们报告称,最近推出的商业菌株(Vmax X2)支持强大的非天然氨基酸诱变,能产生含多达5种非经典α-氨基酸(ncAA)的可溶性蛋白质的优异产量。在Vmax X2中表达的含ncAA的超级折叠绿色荧光蛋白(sfGFP)的分离产量比使用商业表达菌株(Top10和BL21)时高出多达25倍,比使用两种不同的基因组重编码菌株(缺乏内源性UAG终止密码子和释放因子1,并已针对提高适应性和优选生长温度进行了优化,即C321.ΔA.opt和C321.ΔA.exp)时高出10倍以上。除了可溶性蛋白质产量更高外,Vmax X2细胞还能产生在UAG编码位置错误掺入天然α-氨基酸水平显著更低的蛋白质,特别是在ncAA是所选正交氨酰-tRNA合成酶(aaRS)的中等底物的情况下。这种保真度的提高意味着使用Vmax X2细胞作为表达宿主可以避免进行耗时的定向进化实验来提高aaRS对高度期望但次优的ncAA底物的选择性。