首页> 外文期刊>Journal of bacteriology >Modulation of the Function of the Signal Receptor Domain of XylR, a Member of a Family of Prokaryotic Enhancer-Like Positive Regulators
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Modulation of the Function of the Signal Receptor Domain of XylR, a Member of a Family of Prokaryotic Enhancer-Like Positive Regulators

机译:XylR信号受体域功能的调节,XylR是原核增强子样正调节剂家族的成员

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The XylR protein controls expression from the Pseudomonas putida TOL plasmid upper pathway operon promoter (Pu) in response to aromatic effectors. XylR-dependent stimulation of transcription from a Pu::lacZ fusion shows different induction kinetics with different effectors. With toluene, activation followed a hyperbolic curve with an apparent K of 0.95 mM and a maximum β-galactosidase activity of 2,550 Miller units. Witho-nitrotoluene, in contrast, activation followed a sigmoidal curve with an apparent K of 0.55 mM and a Hill coefficient of 2.65. m-Nitrotoluene kept the XylR regulator in an inactive transcriptional form. Therefore, upon binding of an effector, the substituent on the aromatic ring leads to productive or unproductive XylR forms. The different transcriptional states of the XylR regulator are substantiated by XylR mutants. XylRE172K is a mutant regulator that is able to stimulate transcription from the Pu promoter in the presence of m-nitrotoluene; however, its response tom-aminotoluene was negligible, in contrast with the wild-type regulator. These results illustrate the importance of the electrostatic interactions in effector recognition and in the stabilization of productive and unproductive forms by the regulator upon aromatic binding. XylRD135N and XylRD135Q are mutant regulators that are able to stimulate transcription from Pu in the absence of effectors, whereas substitution of Glu for Asp135 in XylRD135E resulted in a mutant whose ability to recognize effectors was severely impaired. Therefore, the conformation of mutant XylRD135Q as well as XylRD135N seemed to mimic that of the wild-type regulator when effector binding occurred, whereas mutant XylRD135E seemed to be blocked in a conformation similar to that of wild-type XylR and XylRE172K upon binding to an inhibitor molecule such as m-nitrotoluene orm-aminotoluene.
机译:XylR蛋白控制 Pseudomonas putida TOL质粒上途径操纵子启动子(Pu)的表达,以响应芳香效应子。 Pu :: lacZ 融合蛋白的转录依赖于XylR的刺激显示出不同的诱导动力学和不同的效应子。对于甲苯,活化遵循双曲曲线,表观 K 为0.95 mM,最大β-半乳糖苷酶活性为2,550 Miller单位。相反,使用 o -硝基甲苯,活化遵循S形曲线,表观 K 为0.55 mM,希尔系数为2.65。 m -硝基甲苯使XylR调节剂保持失活的转录形式。因此,在结合效应子时,芳环上的取代基导致产生或不产生的XylR形式。 XylR调节子可证实XylR调节子的不同转录状态。 XylRE172K是一种突变调节剂,能够在 m -硝基甲苯的存在下刺激Pu启动子的转录;然而,与野生型调节剂相比,它对 m -氨基甲苯的反应可以忽略不计。这些结果说明了静电相互作用对于效应子识别以及调节剂在芳香族结合时稳定生产形式和非生产形式的重要性。 XylRD135N和XylRD135Q是突变调控因子,能够在没有效应子的情况下刺激Pu的转录,而XylRD135E中Glu取代Asp135会导致突变体,其识别效应子的能力受到严重损害。因此,当发生效应子结合时,突变体XylRD135Q和XylRD135N的构象似乎模仿了野生型调节子的构象,而突变体XylRD135E似乎在与野生型XylR和XylRE172K结合后被构象阻断了。抑制剂分子,例如 m -硝基甲苯或 m -氨基甲苯。

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