发起人
酿酒酵母
抑制因子
生物传感器
转录因子
计算生物学
合成生物学
代谢工程
心理压抑
响应元素
生物
酵母
遗传学
基因
基因表达
生物化学
作者
Yasaman Dabirian,Xiaowei Li,Yun Chen,Florian David,Jens Nielsen,Verena Siewers
标识
DOI:10.1021/acssynbio.9b00144
摘要
Metabolite biosensors are useful tools for high-throughput screening approaches and pathway regulation approaches. An important feature of biosensors is the dynamic range. To expand the maximum dynamic range of a transcription factor-based biosensor in Saccharomyces cerevisiae, using the fapO/FapR system from Bacillus subtilis as an example case, five native promoters, including constitutive and glucose-regulated ones, were modified. By evaluating different binding site (BS) positions in the core promoters, we identified locations that resulted in a high maximum dynamic range with low expression under repressed conditions. We further identified BS positions in the upstream element region of the TEF1 promoter that did not influence the native promoter strength but resulted in repression in the presence of a chimeric repressor consisting of FapR and the yeast repressor Mig1. These modified promoters with broad dynamic ranges will provide useful information for the engineering of future biosensors and their use in complex genetic circuits.
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