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Candida albicans-produced farnesol stimulates Pseudomonas quinolone signal production in LasR-defective Pseudomonas aeruginosa strains

机译:白色念珠菌生产的法尼醇刺激LasR缺陷型铜绿假单胞菌菌株中的假单胞菌喹诺酮信号产生

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摘要

Candida albicans has been previously shown to stimulate the production of Pseudomonas aeruginosa phenazine toxins in dual-species colony biofilms. Here, we report that P. aeruginosa lasR mutants, which lack the master quorum sensing system regulator, regain the ability to produce quorum-sensing-regulated phenazines when cultured with C. albicans. Farnesol, a signalling molecule produced by C. albicans, was sufficient to stimulate phenazine production in LasR− laboratory strains and clinical isolates. P. aeruginosa ΔlasR mutants are defective in production of the Pseudomonas quinolone signal (PQS) due to their inability to properly induce pqsH, which encodes the enzyme necessary for the last step in PQS biosynthesis. We show that expression of pqsH in a ΔlasR strain was sufficient to restore PQS production, and that farnesol restored pqsH expression in ΔlasR mutants. The farnesol-mediated increase in pqsH required RhlR, a transcriptional regulator downstream of LasR, and farnesol led to higher levels of N-butyryl-homoserine lactone, the small molecule activator of RhlR. Farnesol promotes the production of reactive oxygen species (ROS) in a variety of species. Because the antioxidant N-acetylcysteine suppressed farnesol-induced RhlR activity in LasR− strains, and hydrogen peroxide was sufficient to restore PQS production in las mutants, we propose that ROS are responsible for the activation of downstream portions of this quorum sensing pathway. LasR mutants frequently arise in the lungs of patients chronically infected with P. aeruginosa. The finding that C. albicans, farnesol or ROS stimulate virulence factor production in lasR strains provides new insight into the virulence potential of these strains.
机译:先前已证明白色念珠菌能刺激双物种菌落生物膜中铜绿假单胞菌吩嗪毒素的产生。在这里,我们报告铜绿假单胞菌lasR突变体,缺少主要的群体感应系统调节剂,当与白色念珠菌一起培养时,恢复了产生群体感应调节的吩嗪的能力。法尼索尔是由白色念珠菌产生的信号分子,足以刺激LasR-实验室菌株和临床分离株中吩嗪的产生。铜绿假单胞菌ΔlasR突变体由于无法正确诱导pqsH而无法产生假单胞菌喹诺酮信号(PQS),pqsH编码了PQS生物合成最后一步所需的酶。我们表明,在ΔlasR菌株中表达pqsH足以恢复PQS的产生,而法呢醇在ΔlasR突变体中恢复了pqsH表达。法尼醇介导的pqsH的增加需要RhlR(LasR下游的转录调节因子),而法尼醇导致RhlR的小分子活化剂N-丁酰-高丝氨酸内酯的含量更高。法尼醇可促进多种物种中活性氧物质(ROS)的产生。因为抗氧化剂N-乙酰半胱氨酸在LasR-菌株中抑制了法尼醇诱导的RhlR活性,并且过氧化氢足以恢复las突变体中的PQS产生,所以我们建议ROS负责激活该群体感应途径的下游部分。 LasR突变体经常出现在慢性感染铜绿假单胞菌的患者的肺中。白色念珠菌,法尼醇或ROS刺激lasR菌株产生毒力因子的发现为这些菌株的毒力潜力提供了新的见识。

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