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Metabolism of Acyl-Homoserine Lactone Quorum-Sensing Signals by Variovorax paradoxus

机译:变异的Variovorax paradoxus代谢的酰基-高丝氨酸内酯群体感应信号

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摘要

Acyl-homoserine lactones (acyl-HSLs) serve as dedicated cell-to-cell signaling molecules in many species of the class Proteobacteria. We have addressed the question of whether these compounds can be degraded biologically. A motile, rod-shaped bacterium was isolated from soil based upon its ability to utilize N-(3-oxohexanoyl)-L-homoserine lactone as the sole source of energy and nitrogen. The bacterium was classified as a strain of Variovorax paradoxus. The V. paradoxus isolate was capable of growth on all of the acyl-HSLs tested. The molar growth yields correlated with the length of the acyl group. HSL, a product of acyl-HSL metabolism, was used as a nitrogen source, but not as an energy source. Cleavage and partial mineralization of the HSL ring were demonstrated by using radiolabeled substrate. This study indicates that some strains of V. paradoxus degrade and grow on acyl-HSL signals as the sole energy and nitrogen sources. This study provides clues about the metabolic pathway of acyl-HSL degradation by V. paradoxus.
机译:酰基高丝氨酸内酯(酰基-HSL)在变形杆菌属的许多物种中充当专用的细胞间信号分子。我们已经解决了这些化合物是否可以被生物降解的问题。根据其利用N-(3-氧代己酰基)-L-高丝氨酸内酯作为唯一的能量和氮源的能力,从土壤中分离出一种能运动的杆状细菌。该细菌被分类为Variovorax paradoxus的菌株。奇异弧菌分离物能够在所有测试的酰基-HSL上生长。摩尔生长产率与酰基的长度相关。酰基-HSL代谢产物HSL被用作氮源,而不是能源。通过使用放射性标记的底物证明了HSL环的裂解和部分矿化。这项研究表明,某些悖论弧菌会以酰基-HSL信号作为唯一的能源和氮源降解并生长。这项研究提供了关于V. paradoxus降解酰基-HSL的代谢途径的线索。

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  • 年度 2000
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  • 正文语种 {"code":"en","name":"English","id":9}
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