Engineering bacterial signals and sensors.

Contributions to microbiology Pub Date : 2009-01-01 Epub Date: 2009-06-02 DOI:10.1159/000219381
Howard Salis, Alvin Tamsir, Christopher Voigt
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引用次数: 52

Abstract

In the emerging field of synthetic biology, a central goal is to reliably engineer bacteria to respond to environmental signals according to a pre-determined genetic program. The sensor systems and genetic circuitry inside bacteria are the 'eyes' and 'brain' of a new class of biotechnological applications in which bacteria are used as living, self-replicating computers that can beneficially interact with the physical world. These engineered gene networks are constructed by extracting natural sensor systems and other genetic parts from multiple organisms and recombining them into novel configurations. This chapter is a how-to guide. It describes several strategies for engineering new bacterial sensor systems and synthetic gene networks that are capable of sensing a desired stimulus and generating interesting dynamical or pattern-forming responses. We also provide specification sheets describing many two-component and quorum-sensing systems, focusing on the information that one needs to know in order to use them for engineering applications.

工程细菌信号和传感器。
在合成生物学的新兴领域,一个中心目标是可靠地设计细菌,使其根据预先确定的遗传程序对环境信号作出反应。细菌内部的传感器系统和遗传电路是一类新型生物技术应用的“眼睛”和“大脑”,在这些应用中,细菌被用作活的、自我复制的计算机,可以与物理世界有益地互动。这些工程基因网络是通过从多个生物体中提取自然传感器系统和其他遗传部分,并将它们重新组合成新的结构来构建的。本章是一个操作指南。它描述了几种设计新的细菌传感器系统和合成基因网络的策略,这些系统能够感知所需的刺激并产生有趣的动态或模式形成反应。我们还提供了描述许多双组件和群体感应系统的规格表,重点是为了将它们用于工程应用而需要知道的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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