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通过模块化隔室化设计原细胞。

Protocell design through modular compartmentalization.

机构信息

Department of Chemistry and Institute of Chemical Biology, Imperial College London, Exhibition Road, London SW7 2AZ, UK.

出版信息

J R Soc Interface. 2013 Aug 7;10(87):20130496. doi: 10.1098/rsif.2013.0496. Print 2013 Oct 6.

Abstract

De novo synthetic biological design has the potential to significantly impact upon applications such as energy generation and nanofabrication. Current designs for constructing organisms from component parts are typically limited in scope, as they utilize a cut-and-paste ideology to create simple stepwise engineered protein-signalling pathways. We propose the addition of a new design element that segregates components into lipid-bound 'proto-organelles', which are interfaced with response elements and housed within a synthetic protocell. This design is inspired by living cells, which utilize multiple types of signalling molecules to facilitate communication between isolated compartments. This paper presents our design and validation of the components required for a simple multi-compartment protocell machine, for coupling a light transducer to a gene expression system. This represents a general design concept for the compartmentalization of different types of artificial cellular machinery and the utilization of non-protein signal molecules for signal transduction.

摘要

从头合成生物学设计有可能对能源产生和纳米制造等应用产生重大影响。目前,从组成部分构建生物体的设计通常范围有限,因为它们利用一刀切的思想来创建简单的逐步工程蛋白信号通路。我们建议增加一个新的设计元素,将组件分隔成脂质结合的“原细胞”,这些原细胞与响应元件接口,并位于合成原细胞内。这种设计的灵感来自于活细胞,活细胞利用多种类型的信号分子来促进隔离隔室之间的通信。本文介绍了我们设计和验证的用于将光传感器与基因表达系统耦合的简单多隔室原细胞机器所需的组件。这代表了不同类型的人工细胞机器的隔室化和非蛋白信号分子用于信号转导的一般设计概念。

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Protocell design through modular compartmentalization.通过模块化隔室化设计原细胞。
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本文引用的文献

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Genetic switchboard for synthetic biology applications.用于合成生物学应用的遗传开关。
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