Yoo Justin I, Navaratna Tejas A, Kolence Patrick, O'Malley Michelle A
Department of Chemical Engineering, University of California Santa Barbara, Santa Barbara, California 93106, United States.
ACS Synth Biol. 2022 Jan 21;11(1):39-45. doi: 10.1021/acssynbio.1c00030. Epub 2022 Jan 3.
The directed evolution of proteins comprises a search of sequence space for variants that improve a target phenotype, yet identification of desirable variants is inherently limited by library size and screening ability. Selections that couple protein phenotype to cell viability accelerate identification of promising variants by depleting libraries of undesirable variants . Here, we introduce GPCR-FEX, a stringent selection platform that couples G-protein coupled receptor (GPCR) signaling to expression of a fluoride ion exporter ()-GFP fusion gene and concomitant cellular fluoride tolerance in yeast. The GPCR-FEX platform works to deplete inactive GPCR variants from the library prior to high-throughput fluorescence-based cell sorting for rapid, inexpensive screening of receptor libraries that sample an expanded sequence space. Using this system, was placed under the control of either P or P, promoters activated upon agonist binding by the native yeast GPCRs, Ste2p or Ste3p. Addition of a C-terminal degron to FEX1p enhanced the dynamic range of cell growth between agonist-treated and untreated cells. Using deep sequencing to enumerate population members, we show rapid selection of a previously engineered Ste2p receptor mutant strain over wild-type Ste2p in a model library enrichment experiment. Overall, the GPCR-FEX platform provides a mechanism to rapidly engineer GPCRs, which are important cellular sensors for synthetic biology.
蛋白质的定向进化包括在序列空间中搜索能够改善目标表型的变体,然而,理想变体的鉴定本质上受到文库大小和筛选能力的限制。将蛋白质表型与细胞活力相关联的筛选方法,通过去除文库中不理想的变体,加速了有前景变体的鉴定。在此,我们介绍了GPCR-FEX,这是一种严格的筛选平台,它将G蛋白偶联受体(GPCR)信号传导与氟离子转运蛋白(FEX1)-绿色荧光蛋白(GFP)融合基因的表达以及酵母细胞对氟的耐受性相关联。GPCR-FEX平台在基于荧光的高通量细胞分选之前,用于从文库中去除无活性的GPCR变体,以便对采样扩展序列空间的受体文库进行快速、低成本的筛选。使用该系统时,FEX1基因置于P GAL1或P GAL10启动子的控制之下,这些启动子在天然酵母GPCR Ste2p或Ste3p与激动剂结合后被激活。在FEX1p上添加C端降解结构域增强了激动剂处理细胞和未处理细胞之间的细胞生长动态范围。通过深度测序来计数群体成员,我们在模型文库富集实验中展示了在野生型Ste2p背景下对先前工程改造的Ste2p受体突变株的快速筛选。总体而言,GPCR-FEX平台提供了一种快速改造GPCR的机制,而GPCR是合成生物学中重要的细胞传感器。