热的
突变体
抄写(语言学)
合成生物学
温度控制
功能(生物学)
生物
基因
细胞生物学
计算生物学
生物物理学
材料科学
化学
纳米技术
遗传学
物理
热力学
语言学
哲学
作者
Wai Kit David Chee,Jing Wui Yeoh,Viet Linh Dao,Chueh Loo Poh
标识
DOI:10.1021/acssynbio.1c00545
摘要
Temperature is a physical cue that is easy to apply, allowing cellular behaviors to be controlled in a contactless and dynamic manner via heat-inducible/repressible systems. However, existing heat-repressible systems are limited in number, rely on thermal sensitive mRNA or transcription factors that function at low temperatures, lack tunability, suffer delays, and are overly complex. To provide an alternative mode of thermal regulation, we developed a library of compact, reversible, and tunable thermal-repressible split-T7 RNA polymerase systems (Thermal-T7RNAPs), which fused temperature-sensitive domains of Tlpa protein with split-T7RNAP to enable direct thermal control of the T7RNAP activity between 30 and 42 °C. We generated a large mutant library with varying thermal performances via an automated screening framework to extend temperature tunability. Lastly, using the mutants, novel thermal logic circuitry was implemented to regulate cell growth and achieve active thermal control of the cell proportions within co-cultures. Overall, this technology expanded avenues for thermal control in biotechnology applications.
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