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首页> 外文期刊>Protein engineering design & selection: PEDS >A ToxR-based two-hybrid system for the detection of periplasmic and cytoplasmic protein-protein interactions in Escherichia coli: minimal requirements for specific DNA binding and transcriptional activation
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A ToxR-based two-hybrid system for the detection of periplasmic and cytoplasmic protein-protein interactions in Escherichia coli: minimal requirements for specific DNA binding and transcriptional activation

机译:基于ToxR的两杂交系统,用于检测大肠杆菌中的周质和细胞质蛋白相互作用:对特定DNA结合和转录激活的最低要求

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摘要

The Vibrio cholerae transcriptional regulator ToxR is anchored in the cytoplasmic membrane by a single transmembrane segment, its C-terminal domain facing the periplasm. Most of its N-terminal cytoplasmic domain shares sequence similarity with the winged helix-turn-helix (wHTH) motif of OmpR-like transcriptional regulators. In the heterologous host Escherichia coli ToxR activates transcription at the V.cholerae ctx promoter in a dimerization-dependent manner, which has led to its employment as a genetic indicator for protein-protein interactions. However, although offering a broader potential application range than other prokaryotic two-hybrid systems described to date, ToxR has so far only been used to study interactions between heterologous transmembrane segments or to monitor homodimerization of C-terminal fusion partners in the periplasm and the cytoplasm of E.coli. Here we show that the ToxR-system also allows the detection of heterodimerization in both cellular compartments of E.coli. In addition, to better understand ToxR's mode of action at ctx in E.coli, we have investigated the minimal requirements for its function as a transcriptional activator. We show that the wHTH motif of ToxR's N-terminal domain constitutes the minimal structural element required to activate transcription at ctx in E.coli when fused to a dimerizing protein module.
机译:霍乱弧菌转录调节因子ToxR通过单个跨膜区段锚定在细胞质膜中,其C端结构域面对周质。它的大多数N端胞质结构域与OmpR样转录调节因子的有翼螺旋-螺旋-螺旋(wHTH)基序共享序列相似性。在异源宿主中,ToxR以二聚化依赖性的方式激活霍乱弧菌ctx启动子的转录,这导致其被用作蛋白质-蛋白质相互作用的遗传指标。然而,尽管与迄今为止描述的其他原核生物双杂交系统相比,它提供了更广泛的潜在应用范围,但ToxR迄今为止仅用于研究异源跨膜片段之间的相互作用或监测周质和细胞质中C末端融合伴侣的同型二聚化大肠杆菌在这里,我们显示ToxR系统还允许在大肠杆菌的两个细胞区室中检测异二聚化。此外,为了更好地了解ToxR在大肠杆菌中ctx处的作用方式,我们研究了其作为转录激活因子的最低要求。我们显示,ToxR N末端域的wHTH主题构成了与二聚化蛋白模块融合时激活大肠杆菌ctx转录所需的最小结构元件。

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