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基于噬菌体 ΦC31 整合系统的植物合成生物学记忆开关。

A memory switch for plant synthetic biology based on the phage ϕC31 integration system.

机构信息

Instituto de Biología Molecular y Celular de Plantas (IBMCP). CSIC - Universidad Politécnica de Valencia. Camino de Vera s/n, 46022 Valencia, Spain.

出版信息

Nucleic Acids Res. 2020 Apr 6;48(6):3379-3394. doi: 10.1093/nar/gkaa104.

Abstract

Synthetic biology has advanced from the setup of basic genetic devices to the design of increasingly complex gene circuits to provide organisms with new functions. While many bacterial, fungal and mammalian unicellular chassis have been extensively engineered, this progress has been delayed in plants due to the lack of reliable DNA parts and devices that enable precise control over these new synthetic functions. In particular, memory switches based on DNA site-specific recombination have been the tool of choice to build long-term and stable synthetic memory in other organisms, because they enable a shift between two alternative states registering the information at the DNA level. Here we report a memory switch for whole plants based on the bacteriophage ϕC31 site-specific integrase. The switch was built as a modular device made of standard DNA parts, designed to control the transcriptional state (on or off) of two genes of interest by alternative inversion of a central DNA regulatory element. The state of the switch can be externally operated by action of the ϕC31 integrase (Int), and its recombination directionality factor (RDF). The kinetics, memory, and reversibility of the switch were extensively characterized in Nicotiana benthamiana plants.

摘要

合成生物学已经从基本遗传器件的构建发展到越来越复杂的基因电路的设计,为生物体提供新的功能。虽然许多细菌、真菌和哺乳动物的单细胞底盘已经得到了广泛的工程改造,但由于缺乏可靠的 DNA 元件和器件,使得这些新的合成功能能够得到精确的控制,因此这一进展在植物中被延迟了。特别是,基于 DNA 位点特异性重组的记忆开关已经成为在其他生物体中构建长期稳定的合成记忆的首选工具,因为它们能够在两个替代状态之间切换,从而在 DNA 水平上记录信息。在这里,我们报告了一个基于噬菌体 ϕC31 位点特异性整合酶的植物整体记忆开关。该开关被构建为一个由标准 DNA 元件组成的模块化装置,旨在通过中央 DNA 调节元件的交替反转来控制两个感兴趣基因的转录状态(开或关)。开关的状态可以通过噬菌体 ϕC31 整合酶(Int)及其重组方向因子(RDF)的作用来外部操作。该开关的动力学、记忆和可逆性在本氏烟植株中得到了广泛的表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc5a/7102980/190c6e2800d0/gkaa104fig1.jpg

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