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显性负向自动调节限制了基因网络中的稳态抑制水平。

Dominant negative autoregulation limits steady-state repression levels in gene networks.

作者信息

Semsey Szabolcs, Krishna Sandeep, Erdossy János, Horváth Péter, Orosz László, Sneppen Kim, Adhya Sankar

机构信息

Department of Genetics, Eötvös Lóránd University, Budapest, Hungary.

出版信息

J Bacteriol. 2009 Jul;191(14):4487-91. doi: 10.1128/JB.00056-09. Epub 2009 May 8.

Abstract

Many transcription factors repress transcription of their own genes. Negative autoregulation has been shown to reduce cell-cell variation in regulatory protein levels and speed up the response time in gene networks. In this work we examined transcription regulation of the galS gene and the function of its product, the GalS protein. We observed a unique operator preference of the GalS protein characterized by dominant negative autoregulation. We show that this pattern of regulation limits the repression level of the target genes in steady states. We suggest that transcription factors with dominant negative autoregulation are designed for regulating gene expression during environmental transitions.

摘要

许多转录因子会抑制其自身基因的转录。负向自调控已被证明可减少调节蛋白水平的细胞间差异,并加快基因网络中的响应时间。在这项工作中,我们研究了galS基因的转录调控及其产物GalS蛋白的功能。我们观察到GalS蛋白具有独特的操纵子偏好,其特征为显性负向自调控。我们表明,这种调控模式在稳态下限制了靶基因的抑制水平。我们认为,具有显性负向自调控的转录因子是为在环境转变期间调节基因表达而设计的。

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本文引用的文献

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Positive feedback in cellular control systems.细胞控制系统中的正反馈。
Bioessays. 2008 Jun;30(6):542-55. doi: 10.1002/bies.20769.
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Signal integration in the galactose network of Escherichia coli.大肠杆菌半乳糖网络中的信号整合
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