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利用合成启动子改组揭示顺式调控密码

Uncovering cis regulatory codes using synthetic promoter shuffling.

作者信息

Kinkhabwala Ali, Guet Călin C

机构信息

Laboratory of Living Matter and Center for Studies in Physics and Biology, Rockefeller University, New York, New York, United States of America.

出版信息

PLoS One. 2008 Apr 30;3(4):e2030. doi: 10.1371/journal.pone.0002030.

Abstract

Revealing the spectrum of combinatorial regulation of transcription at individual promoters is essential for understanding the complex structure of biological networks. However, the computations represented by the integration of various molecular signals at complex promoters are difficult to decipher in the absence of simple cis regulatory codes. Here we synthetically shuffle the regulatory architecture--operator sequences binding activators and repressors--of a canonical bacterial promoter. The resulting library of complex promoters allows for rapid exploration of promoter encoded logic regulation. Among all possible logic functions, NOR and ANDN promoter encoded logics predominate. A simple transcriptional cis regulatory code determines both logics, establishing a straightforward map between promoter structure and logic phenotype. The regulatory code is determined solely by the type of transcriptional regulation combinations: two repressors generate a NOR: NOT (a OR b) whereas a repressor and an activator generate an ANDN: a AND NOT b. Three-input versions of both logics, having an additional repressor as an input, are also present in the library. The resulting complex promoters cover a wide dynamic range of transcriptional strengths. Synthetic promoter shuffling represents a fast and efficient method for exploring the spectrum of complex regulatory functions that can be encoded by complex promoters. From an engineering point of view, synthetic promoter shuffling enables the experimental testing of the functional properties of complex promoters that cannot necessarily be inferred ab initio from the known properties of the individual genetic components. Synthetic promoter shuffling may provide a useful experimental tool for studying naturally occurring promoter shuffling.

摘要

揭示单个启动子转录的组合调控谱对于理解生物网络的复杂结构至关重要。然而,在缺乏简单顺式调控密码的情况下,复杂启动子处各种分子信号整合所代表的计算难以解读。在这里,我们人工改组了一个典型细菌启动子的调控结构——结合激活因子和阻遏因子的操纵序列。由此产生的复杂启动子文库允许快速探索启动子编码的逻辑调控。在所有可能的逻辑功能中,或非和与非启动子编码的逻辑占主导地位。一个简单的转录顺式调控密码决定了这两种逻辑,在启动子结构和逻辑表型之间建立了直接的映射。该调控密码仅由转录调控组合的类型决定:两个阻遏因子产生一个或非:非(a或b),而一个阻遏因子和一个激活因子产生一个与非:a且非b。文库中还存在这两种逻辑的三输入版本,有一个额外的阻遏因子作为输入。由此产生的复杂启动子覆盖了广泛的转录强度动态范围。合成启动子改组是一种快速有效的方法,用于探索复杂启动子可以编码的复杂调控功能谱。从工程学角度来看,合成启动子改组能够对复杂启动子的功能特性进行实验测试,而这些特性不一定能从单个遗传元件的已知特性中从头推断出来。合成启动子改组可能为研究自然发生的启动子改组提供一个有用的实验工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44ef/2321153/c0bc7dce5945/pone.0002030.g001.jpg

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