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Understanding Biological Regulation Through Synthetic Biology
Annual Review of Biophysics ( IF 10.4 ) Pub Date : 2018-05-24 00:00:00 , DOI: 10.1146/annurev-biophys-070816-033903
Caleb J. Bashor 1 , James J. Collins 1, 2, 3, 4
Affiliation  

Engineering synthetic gene regulatory circuits proceeds through iterative cycles of design, building, and testing. Initial circuit designs must rely on often-incomplete models of regulation established by fields of reductive inquiry—biochemistry and molecular and systems biology. As differences in designed and experimentally observed circuit behavior are inevitably encountered, investigated, and resolved, each turn of the engineering cycle can force a resynthesis in understanding of natural network function. Here, we outline research that uses the process of gene circuit engineering to advance biological discovery. Synthetic gene circuit engineering research has not only refined our understanding of cellular regulation but furnished biologists with a toolkit that can be directed at natural systems to exact precision manipulation of network structure. As we discuss, using circuit engineering to predictively reorganize, rewire, and reconstruct cellular regulation serves as the ultimate means of testing and understanding how cellular phenotype emerges from systems-level network function.

中文翻译:


通过合成生物学了解生物调控

工程合成基因调控电路是通过设计,构建和测试的迭代循环进行的。初始电路设计必须依靠由还原性探究领域(生物化学,分子和系统生物学)建立的经常不完整的调节模型。由于不可避免地会遇到,研究和解决设计和实验观察到的电路行为方面的差异,因此工程周期的每一轮都可能迫使人们重新认识自然网络功能。在这里,我们概述了利用基因电路工程过程推进生物学发现的研究。合成基因电路工程研究不仅提高了我们对细胞调节的理解,还为生物学家提供了一个工具包,该工具包可以针对自然系统以精确地控制网络结构。正如我们讨论的那样,使用电路工程来预测性地重组,重新布线和重建细胞调节作用是测试和理解细胞表型如何从系统级网络功能中显现出来的最终手段。

更新日期:2018-05-24
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