Scribani Rossi Chiara, Molina-Henares María Antonia, Espinosa-Urgel Manuel, Rinaldo Serena
Laboratory affiliated to Istituto Pasteur Italia, Fondazione Cenci Bolognetti, Department of Biochemical Sciences "A. Rossi Fanelli", Sapienza University of Rome, Rome, Italy.
Department of Biotechnology and Environmental Protection, Estación Experimental del Zaidin, CSIC, Granada, Spain.
Adv Exp Med Biol. 2025;1476:31-47. doi: 10.1007/5584_2024_797.
Beyond their role as protein-building units, amino acids are modulators of multiple behaviours in different microorganisms. In the root-colonizing beneficial bacterium Pseudomonas putida (recently proposed to be reclassified as alloputida) KT2440, current evidence suggests that arginine functions both as a metabolic indicator and as an environmental signal molecule, modulating processes such as chemotactic responses, siderophore-mediated iron uptake or the levels of the intracellular second messenger cyclic diguanylate (c-di-GMP). Using microcalorimetry and extracellular flux analysis, in this work we have studied the metabolic adaptation of P. putida KT2440 to the presence of L-arginine in the growth medium, and the influence of mutations related to arginine metabolism. Arginine causes rapid changes in the respiratory activity of P. putida, particularly magnified in a mutant lacking the transcriptional regulator ArgR. The metabolic activity of mutants affected in arginine transport and metabolism is also altered during biofilm formation in the presence of the amino acid. The results obtained here further support the role of arginine as a metabolic signal in P. putida and the relevance of ArgR in the adaptation to the amino acid. They also serve as proof of concept on the use of calorimetric and extracellular flux techniques to analyse metabolic responses in bacteria and the impact of different mutant backgrounds on such responses.
除了作为蛋白质构建单元的作用外,氨基酸还是不同微生物中多种行为的调节因子。在定殖于根部的有益细菌恶臭假单胞菌(最近提议重新分类为别氏假单胞菌)KT2440中,目前的证据表明,精氨酸既作为代谢指标又作为环境信号分子,调节诸如趋化反应、铁载体介导的铁摄取或细胞内第二信使环二鸟苷酸(c-di-GMP)水平等过程。在这项工作中,我们使用微量热法和细胞外通量分析,研究了恶臭假单胞菌KT2440对生长培养基中L-精氨酸存在的代谢适应性,以及与精氨酸代谢相关的突变的影响。精氨酸会导致恶臭假单胞菌的呼吸活性迅速变化,在缺乏转录调节因子ArgR的突变体中这种变化尤为明显。在氨基酸存在的情况下,生物膜形成过程中,精氨酸转运和代谢受影响的突变体的代谢活性也会改变。这里获得的结果进一步支持了精氨酸作为恶臭假单胞菌代谢信号的作用以及ArgR在适应氨基酸方面的相关性。它们还证明了使用量热法和细胞外通量技术来分析细菌代谢反应以及不同突变背景对这种反应的影响的概念验证。