p53 Laboratory, Agency for Science, Technology and Research (A*STAR), 8A Biomedical Grove, 138648, Singapore.
Nucleic Acids Res. 2020 Dec 16;48(22):e128. doi: 10.1093/nar/gkaa933.
Directed evolution methodologies benefit from read-outs quantitatively linking genotype to phenotype. We therefore devised a method that couples protein-peptide interactions to the dynamic read-out provided by an engineered DNA polymerase. Fusion of a processivity clamp protein to a thermostable nucleic acid polymerase enables polymerase activity and DNA amplification in otherwise prohibitive high-salt buffers. Here, we recapitulate this phenotype by indirectly coupling the Sso7d processivity clamp to Taq DNA polymerase via respective fusion to a high affinity and thermostable interacting protein-peptide pair. Escherichia coli cells co-expressing protein-peptide pairs can directly be used in polymerase chain reactions to determine relative interaction strengths by the measurement of amplicon yields. Conditional polymerase activity is further used to link genotype to phenotype of interacting protein-peptide pairs co-expressed in E. coli using the compartmentalized self-replication directed evolution platform. We validate this approach, termed compartmentalized two-hybrid replication, by selecting for high-affinity peptides that bind two model protein partners: SpyCatcher and the large fragment of NanoLuc luciferase. We further demonstrate directed co-evolution by randomizing both protein and peptide components of the SpyCatcher-SpyTag pair and co-selecting for functionally interacting variants.
定向进化方法受益于将基因型与表型定量关联的读出。因此,我们设计了一种方法,将蛋白-肽相互作用与工程化 DNA 聚合酶提供的动态读出相结合。将持续合成蛋白与热稳定核酸聚合酶融合,使聚合酶活性和 DNA 扩增能够在其他高盐缓冲液中进行,否则这些缓冲液会抑制其进行。在这里,我们通过分别将 Sso7d 持续合成蛋白融合到高亲和力和热稳定的相互作用蛋白-肽对,间接将这种表型与 Taq DNA 聚合酶偶联,从而再现了这一表型。共表达蛋白-肽对的大肠杆菌细胞可以直接用于聚合酶链反应,通过测量扩增子产量来确定相对相互作用强度。条件性聚合酶活性进一步用于通过分隔的自我复制定向进化平台将相互作用的蛋白-肽对的基因型与表型联系起来。我们通过选择与两种模型蛋白伴侣(SpyCatcher 和 NanoLuc 荧光素酶的大片段)结合的高亲和力肽来验证这种方法,称之为分隔的双杂交复制。我们进一步通过随机化 SpyCatcher-SpyTag 对的蛋白和肽成分并共同选择功能相互作用的变体来证明定向共进化。