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Potential Applications of the Escherichia coli Heat Shock Response in Synthetic Biology

机译:合成生物学中大肠杆菌热休克反应的潜在应用

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摘要

The Escherichia coli heat shock response (HSR) is a complex mechanism triggered by heat shock and by a variety of other growth-impairing stresses. We explore here the potential use of the E. coli HSR mechanism in synthetic biology approaches. Several components of the regulatory mechanism (such as heat shock promoters, proteins, and RNA thermosensors) can be extremely valuable in the creation of a toolbox of well-characterized biological parts to construct biosensors or microbial cell factories with applications in the environment, industry, or healthcare. In the future, these systems can be used for instance to detect a pollutant in water, to regulate and optimize the production of a compound with industrial relevance, or to administer a therapeutic agent in vivo.
机译:大肠杆菌热休克反应(HSR)是一种复杂的机构,由热冲击和各种其他生长损害应力引发。 我们探讨了在综合生物学方法中的大肠杆菌HSR机制的潜在使用。 调节机制的几个组分(例如热休克启动子,蛋白质和RNA热滤光器)可以在创建良好的生物零部件的工具箱中来构建生物传感器或微生物细胞工厂,在环境中,行业的应用, 或医疗保健。 将来,这些系统可用于检测水中的污染物,以调节和优化具有工业相关性的化合物的生产,或者在体内施用治疗剂。

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