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Simultaneous Inhibition of Rhamnolipid and Polyhydroxyalkanoic Acid Synthesis and Biofilm Formation in Pseudomonas aeruginosa by 2-Bromoalkanoic Acids: Effect of Inhibitor Alkyl-Chain-Length

机译:2-溴链烷酸同时抑制铜绿假单胞菌中鼠李糖脂和多羟基链烷酸的合成及生物膜的形成:抑制剂烷基链长度的影响

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摘要

Pseudomonas aeruginosa, an opportunistic human pathogen is known to synthesize rhamnolipid and polyhydroxyalkanoic acid (PHA) of which the acyl-group precursors (e.g., (R)-3-hydroxydecanoic acid) are provided through RhlA and PhaG enzyme, respectively, which have 57% gene sequence homology. The inhibitory effect of three 2-bromo-fatty acids of 2-bromohexanoic acid (2-BrHA), 2-bromooctanoic acid (2-BrOA) and 2-bromodecanoic acid (2-BrDA) was compared to get an insight into the biochemical nature of their probable dual inhibition against the two enzymes. The 2-bromo-compounds were found to inhibit rhamnolipid and PHA synthesis simultaneously in alkyl-chain-length dependent manner at several millimolar concentrations. The separate and dual inhibition of the RhlA and PhaG pathway by the 2-bromo-compounds in the wild-type cells was verified by investigating their inhibitory effects on the rhamnolipid and PHA synthesis in P. aeruginosa ΔphaG and ΔrhlA mutants. Unexpectedly, the order of inhibition strength was found 2-BrHA (≥90% at 2 mM) > 2-BrOA > 2-BrDA, equally for all of the rhamnolipids and PHA synthesis, swarming motility and biofilm formation. We suggest that the novel strongest inhibitor 2-BrHA could be potentially exploited to control the rhamnolipid-associated group behaviors of this pathogen as well as for its utilization as a lead compound in screening for antimicrobial agents based on new antimicrobial targets.
机译:已知铜绿假单胞菌是一种机会性人类病原体,可合成鼠李糖脂和聚羟基链烷酸(PHA),其中的酰基前体(例如,(R)-3-羟基癸酸)分别通过RhlA和PhaG酶提供,分别具有57个%基因序列同源性。比较了2-溴己酸(2-BrHA),2-溴辛酸(2-BrOA)和2-溴脱羧酸(2-BrDA)这三种2-溴脂肪酸的抑制作用,以了解其生化特性。可能对两种酶双重抑制的性质。发现2-溴化合物在数毫摩尔浓度下以烷基链长依赖性方式同时抑制鼠李糖脂和PHA合成。通过研究它们对铜绿假单胞菌ΔphaG和ΔrhlA突变体中鼠李糖脂和PHA合成的抑制作用,证实了野生型细胞中2-溴化合物对RhlA和PhaG途径的单独和双重抑制作用。出乎意料的是,发现抑制强度的顺序为2-BrHA(在2 mM时≥90%)> 2-BrOA> 2-BrDA,对于所有鼠李糖脂和PHA合成,成群运动和生物膜形成均相同。我们建议新型的最强抑制剂2-BrHA可以潜在地用于控制该病原体鼠李糖脂相关的基团行为,以及作为筛选基于新抗菌靶点的抗菌剂的先导化合物。

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