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Assessment of the contribution of chemoreceptor-based signalling to biofilm formation

机译:评估基于化学感受器的信号对生物膜形成的贡献

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Although it is well established that one-and two-component regulatory systems participate in regulating biofilm formation, there also exists evidence suggesting that chemosensory pathways are also involved. However, little information exists about which chemoreceptors and signals modulate this process. Here we report the generation of the complete set of chemoreceptor mutants of Pseudomonas putida KT2440 and the identification of four mutants with significantly altered biofilm phenotypes. These receptors are a WspA homologue of Pseudomonas aeruginosa, previously identified to control biofilm formation by regulating c-di-GMP levels, and three uncharacterized chemoreceptors. One of these receptors, named McpU, was found to mediate chemotaxis towards different polyamines. The functional annotation of McpU was initiated by high-throughput thermal shift assays of the receptor ligand binding domain (LBD). Isothermal titration calorimetry showed that McpU-LBD specifically binds putrescine, cadaverine and spermidine, indicating that McpU represents a novel chemoreceptor type. Another uncharacterized receptor, named McpA, specifically binds 12 different proteinogenic amino acids and mediates chemotaxis towards these compounds. We also show that mutants in McpU and WspA-Pp have a significantly reduced ability to colonize plant roots. Data agree with other reports showing that polyamines are signal molecules involved in the regulation of bacteria-plant communication and biofilm formation.
机译:尽管已经公认一组分和两组分的调节系统参与调节生物膜的形成,但也有证据表明化学感应途径也参与其中。但是,关于哪种化学感受器和信号调节这一过程的信息很少。在这里,我们报告恶臭假单胞菌KT2440的化学感受器突变的完整集的生成,以及四个具有明显改变的生物膜表型的突变体的鉴定。这些受体是铜绿假单胞菌的WspA同源物,先前已确定可通过调节c-di-GMP水平来控制生物膜的形成,以及三个未表征的化学感受器。发现这些受体之一,称为McpU,可介导对不同多胺的趋化性。 McpU的功能注释是通过受体配体结合结构域(LBD)的高通量热位移分析启动的。等温滴定热法显示,McpU-LBD特异结合腐胺,尸胺和亚精胺,表明McpU代表一种新型的化学感受器类型。另一个未表征的受体,称为McpA,特异性结合12种不同的蛋白氨基酸,并介导这些化合物的趋化性。我们还显示McpU和WspA-Pp中的突变体具有明显降低的定植植物根部的能力。数据与其他报告一致,这些报告表明多胺是参与细菌-植物交流和生物膜形成调节的信号分子。

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