高通量筛选
小分子
吞吐量
定向进化
计算生物学
代谢工程
筛选技术
生物
纳米技术
计算机科学
生物信息学
生物化学
酶
材料科学
基因
电信
突变体
无线
作者
Jeffrey A. Dietrich,Adrienne E. McKee,Jay D. Keasling
标识
DOI:10.1146/annurev-biochem-062608-095938
摘要
Metabolic engineering for the overproduction of high-value small molecules is dependent upon techniques in directed evolution to improve production titers. The majority of small molecules targeted for overproduction are inconspicuous and cannot be readily obtained by screening. We provide a review on the development of high-throughput colorimetric, fluorescent, and growth-coupled screening techniques, enabling inconspicuous small-molecule detection. We first outline constraints on throughput imposed during the standard directed evolution workflow (library construction, transformation, and screening) and establish a screening and selection ladder on the basis of small-molecule assay throughput and sensitivity. An in-depth analysis of demonstrated screening and selection approaches for small-molecule detection is provided. Particular focus is placed on in vivo biosensor-based detection methods that reduce or eliminate in vitro assay manipulations and increase throughput. We conclude by providing our prospectus for the future, focusing on transcription factor-based detection systems as a natural microbial mode of small-molecule detection.
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