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Construction of a prototype two-component system from the phosphorelay system TodS/TodT

机译:从磷灰泥系统TodS / TodT构建原型两组分系统

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Two-component systems (TCSs) play key roles in the adaptation of bacteria to environmental changes. In prototype TCSs a single phosphoryl transfer between the sensor kinase and response regulator occurs, whereas phosphorelay TCSs are characterised by a His1-Asp1-His2-Asp2 phosphorylation cascade. The TodS/TodT TCS controls the expression of a toluene degradation pathway and the TodS sensor kinase operates by a three-step internal phosphorelay. Based on TodS we report the construction of a minimal form of TodS, termed as Min-TodS, that contains only three of the seven TodS domains. Min-TodS is composed of the N-terminal PAS sensor domain as well as the C-terminal dimerisation/phosphotransfer domain and catalytic domain of TodS. We have conducted a comparative analysis of the phosphorelay TCS with its prototypal derivative. We demonstrate that Min-TodS binds effector molecules with affinities comparable with those observed for TodS. Min-TodS forms a TCS with TodT and toluene increases the amount of TodT-P. In contrast to TodS, toluene does not stimulate Min-TodS autophosphorylation. The half-life of Min-TodS-P was significantly increased as compared with TodS. Analysis of TodSD500A revealed that the hydrolysis of the acylphosphate of the receiver domain is responsible for the reduced half-life of TodS. The regulation of PtodX expression by Min-TodS/TodT and TodS/TodT in response to different effectors are compared. The Min-TodS/TodT system was characterized by a higher basal activity but a lower magnitude of response. Data will be discussed in the context that the phosphorelay system appears to be better suited for the control of a degradation pathway for toxic compounds.
机译:两组分系统(TCS)在细菌适应环境变化中发挥关键作用。在原型TCS中,发生在传感器激酶和响应调节剂之间的单个磷酰基转移,而磷酰基TCS的特征是His1-Asp1-His2-Asp2磷酸化级联。 TodS / TodT TCS控制甲苯降解途径的表达,并且TodS传感器激酶通过三步内部磷酸化来运作。基于TodS,我们报告了最小形式的TodS的构建,称为Min-TodS,它仅包含七个TodS域中的三个。 Min-TodS由N端PAS传感器结构域以及TodS的C端二聚化/磷酸转移结构域和催化结构域组成。我们对磷光TCS及其原型衍生物进行了比较分析。我们证明Min-TodS结合效应分子的亲和力与TodS观察到的亲和力相当。 Min-TodS与TodT形成TCS,甲苯增加TodT-P的含量。与TodS相比,甲苯不会刺激Min-TodS自磷酸化。与TodS相比,Min-TodS-P的半衰期显着增加。 TodSD500A的分析表明,受体域的酰基磷酸酯的水解导致TodS的半衰期缩短。比较了Min-TodS / TodT和TodS / TodT对不同效应子的PtodX表达调控。 Min-TodS / TodT系统的特征在于较高的基础活性,但响应程度较低。将在磷灰泥系统似乎更适合于控制有毒化合物的降解途径的背景下讨论数据。

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