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首页> 外文期刊>Bioengineered >Functional characterization of a StyS sensor kinase reveals distinct domains associated I with intracellular and extracellular sensing ] of styrene in P. putida CA-3
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Functional characterization of a StyS sensor kinase reveals distinct domains associated I with intracellular and extracellular sensing ] of styrene in P. putida CA-3

机译:StyS传感器激酶的功能表征揭示了与恶臭假单胞菌CA-3中的苯乙烯的胞内和胞外感测相关的不同结构域

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摘要

Bacterial two-component systems (TCSs) are of vital importance in the translation of rapidly changing environmental conditions into appropriate cellular regulatory responses enabling adaptation, growth, and survival. The diverse range of environmentalsignals that TCSs can process, coupled with discrete modular domains within TCS proteins, offers considerable potential for the rational design of bio-sensor and/or bio-reporter strains. In this study we functionally characterize the multi-domain StyS sensor kinase associated with sensing of the aromatic pollutant styrene by Pseudomonas putida CA-3. Deletion analysis of discrete domains was performed and the ability of the truncated StyS sensor proteins to activate a cognate reporter system in an £ coli host assessed. The essential histidine kinase and PAS input domains were identified for StyS dependent activation of the reporter system. However, co-expression of an ABC-transporter protein StyE, previously linked to styrene transport in P. putida CA-3, enabled activation of the reporter system with a StyS construct containing a non-essential PAS input domain, suggesting a novel role for intracellular detection and/or activation. Site directed mutagenesis and amino acid deletions were employed to further characterize the PAS sensing domains of both input regions. The potential implications of these findings in the use of multi-domain sensor kinases in rational design strategies and the potential link between transport and intracellular sensing arediscussed.
机译:细菌两成分系统(TCS)在将快速变化的环境条件转化为适当的细胞调节反应中,使其能够适应,生长和存活的过程中至关重要。 TCS可以处理的多种环境信号,再加上TCS蛋白中的离散模块化结构域,为合理设计生物传感器和/或生物报告株提供了巨大的潜力。在这项研究中,我们在功能上表征与恶臭假单胞菌CA-3感测芳香族污染物苯乙烯相关的多域StyS传感器激酶。进行了离散域的缺失分析,并评估了截短的StyS传感器蛋白激活大肠杆菌宿主中同源报道系统的能力。鉴定出必需的组氨酸激酶和PAS输入域用于报告系统的StyS依赖性激活。然而,先前与恶臭假单胞菌CA-3中的苯乙烯转运相关的ABC转运蛋白StyE的共表达,使得能够利用含有非必需PAS输入域的StyS构建体激活报告系统,这提示了其新的作用。细胞内检测和/或激活。使用定点诱变和氨基酸缺失来进一步表征两个输入区域的PAS感应域。讨论了这些发现在合理设计策略中使用多域传感器激酶的潜在含义以及运输和细胞内传感之间的潜在联系。

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