Department of Biology, US Air Force Academy, Colorado Springs, CO, USA.
Department of Energy, Environmental & Chemical Engineering, Washington University at St. Louis, St. Louis, MO, USA.
Methods Mol Biol. 2024;2760:253-265. doi: 10.1007/978-1-0716-3658-9_15.
Positive selection screens are high-throughput assays to characterize novel enzymes from environmental samples and enrich for more powerful variants from libraries in applications such as biodiversity mining and directed evolution. However, overly stringent selection can limit the power of these screens due to a high false-negative rate. To create a more flexible and less restrictive screen for novel programmable DNA endonucleases, we developed a novel I-SceI-based platform. In this system, mutant E. coli genomes are cleaved upon induction of I-SceI to inhibit cell growth. Growth is rescued in an activity-dependent manner by plasmid curing or cleavage of the I-SceI expression plasmid via endonuclease candidates. More active candidates more readily proliferate and overtake growth of less active variants leading to enrichment. While demonstrated here with Cas9, this protocol can be readily adapted to any programmable DNA endonuclease and used to characterize single candidates or to enrich more powerful variants from pooled candidates or libraries.
正向筛选是一种高通量的方法,可从环境样本中鉴定新的酶,并从文库中富集具有更强功能的变体,应用于生物多样性挖掘和定向进化等领域。然而,过于严格的筛选会由于高假阴性率而限制这些筛选的效果。为了创建一个更灵活、限制更少的新型可编程 DNA 内切酶筛选方法,我们开发了一种新型的基于 I-SceI 的平台。在这个系统中,诱导 I-SceI 会切割突变的大肠杆菌基因组,从而抑制细胞生长。通过质粒消除或内切酶候选物切割 I-SceI 表达质粒,以活性依赖的方式挽救生长。更活跃的候选物更易增殖,从而超越活性较低的变体,实现富集。虽然这里用 Cas9 进行了演示,但该方案可以很容易地应用于任何可编程 DNA 内切酶,并用于鉴定单个候选物,或从候选物或文库中富集更强大的变体。