School of Chemical and Biomolecular Engineering, Georgia Institute of Technology, Atlanta, Georgia 30332, United States.
ACS Synth Biol. 2023 Nov 17;12(11):3287-3300. doi: 10.1021/acssynbio.3c00299. Epub 2023 Oct 24.
The yeast is commonly used to interrogate and screen protein variants and to perform directed evolution studies to develop proteins with enhanced features. While several techniques have been described that help enable the use of yeast for directed evolution, there remains a need to increase their speed and ease of use. Here we present yDBE, a yeast diversifying base editor that functions and employs a CRISPR-dCas9-directed cytidine deaminase base editor to diversify DNA in a targeted, rapid, and high-breadth manner. To develop yDBE, we enhanced the mutation rate of an initial base editor by employing improved deaminase variants and characterizing several scaffolded guide constructs. We then demonstrate the ability of the yDBE platform to improve the affinity of a displayed antibody scFv, rapidly generating diversified libraries and isolating improved binders via cell sorting. By performing high-throughput sequencing analysis of the high-activity yDBE, we show that it enables a mutation rate of 2.13 × 10 substitutions/bp/generation over a window of 100 bp. As yDBE functions entirely and can be easily programmed to diversify nearly any such window of DNA, we posit that it can be a powerful tool for facilitating a variety of directed evolution experiments.
酵母通常用于探究和筛选蛋白质变体,并进行定向进化研究,以开发具有增强特性的蛋白质。尽管已经描述了几种有助于在定向进化中使用酵母的技术,但仍需要提高其速度和易用性。在这里,我们介绍了 yDBE,这是一种酵母多样化碱基编辑器,它的功能和使用 CRISPR-dCas9 指导的胞嘧啶脱氨酶碱基编辑器以靶向、快速和高广度的方式使 DNA多样化。为了开发 yDBE,我们通过使用改进的脱氨酶变体并对几种支架导向构建体进行表征,提高了初始碱基编辑器的突变率。然后,我们证明了 yDBE 平台能够提高展示抗体 scFv 的亲和力,通过细胞分选快速生成多样化文库并分离出改善的结合物。通过对高活性 yDBE 进行高通量测序分析,我们表明它可以在 100bp 的窗口内实现 2.13×10 个取代/bp/代的突变率。由于 yDBE 完全可以发挥作用,并且可以轻松编程来多样化几乎任何此类 DNA 窗口,因此我们认为它可以成为促进各种定向进化实验的有力工具。