Chemical Biology Interface Graduate Program, Johns Hopkins University, 3400 N. Charles St., Baltimore, MD 21218, U.S.A.
Department of Chemical and Biomolecular Engineering, Johns Hopkins University, Baltimore, MD 21218, U.S.A.
Biochem Soc Trans. 2020 Oct 30;48(5):2205-2212. doi: 10.1042/BST20200441.
There is an ongoing need in the synthetic biology community for novel ways to regulate gene expression. Protein switches, which sense biological inputs and respond with functional outputs, represent one way to meet this need. Despite the fact that there is already a large pool of transcription factors and signaling proteins available, the pool of existing switches lacks the substrate specificities and activities required for certain applications. Therefore, a large number of techniques have been applied to engineer switches with novel properties. Here we discuss some of these techniques by broadly organizing them into three approaches. We show how novel switches can be created through mutagenesis, domain swapping, or domain insertion. We then briefly discuss their use as biosensors and in complex genetic circuits.
合成生物学领域一直需要新的方法来调控基因表达。蛋白质开关可以感知生物输入并做出功能输出响应,是满足这一需求的一种方式。尽管已经有大量的转录因子和信号蛋白可供使用,但现有的开关缺乏某些应用所需的底物特异性和活性。因此,人们已经应用了大量技术来设计具有新型特性的开关。在这里,我们通过将这些技术大致分为三种方法来讨论其中的一些技术。我们展示了如何通过突变、结构域交换或结构域插入来创建新型开关。然后,我们简要讨论了它们在生物传感器和复杂遗传回路中的应用。