首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >LsrF a coenzyme A-dependent thiolase catalyzes the terminal step in processing the quorum sensing signal autoinducer-2
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LsrF a coenzyme A-dependent thiolase catalyzes the terminal step in processing the quorum sensing signal autoinducer-2

机译:LsrF一种辅酶A依赖性硫解酶催化处理群体感应信号自动诱导剂2的最终步骤

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摘要

The quorum sensing signal autoinducer-2 (AI-2) regulates important bacterial behaviors, including biofilm formation and the production of virulence factors. Some bacteria, such as Escherichia coli, can quench the AI-2 signal produced by a variety of species present in the environment, and thus can influence AI-2–dependent bacterial behaviors. This process involves uptake of AI-2 via the Lsr transporter, followed by phosphorylation and consequent intracellular sequestration. Here we determine the metabolic fate of intracellular AI-2 by characterizing LsrF, the terminal protein in the Lsr AI-2 processing pathway. We identify the substrates of LsrF as 3-hydroxy-2,4-pentadione-5-phosphate (P-HPD, an isomer of AI-2-phosphate) and coenzyme A, determine the crystal structure of an LsrF catalytic mutant bound to P-HPD, and identify the reaction products. We show that LsrF catalyzes the transfer of an acetyl group from P-HPD to coenzyme A yielding dihydroxyacetone phosphate and acetyl-CoA, two key central metabolites. We further propose that LsrF, despite strong structural homology to aldolases, acts as a thiolase, an activity previously undescribed for this family of enzymes. With this work, we have fully characterized the biological pathway for AI-2 processing in E. coli, a pathway that can be used to quench AI-2 and control quorum-sensing–regulated bacterial behaviors.
机译:群体感应信号自动诱导剂2(AI-2)调节重要的细菌行为,包括生物膜形成和毒力因子的产生。某些细菌,例如大肠杆菌,可以抑制环境中各种物种产生的AI-2信号,从而影响依赖AI-2的细菌行为。这个过程包括通过Lsr转运蛋白摄取AI-2,然后进行磷酸化和随后的细胞内螯合。在这里,我们通过表征Lsr AI-2加工途径中的末端蛋白LsrF来确定细胞内AI-2的代谢命运。我们确定LsrF的底物为3-羟基-2,4-戊二酮-5-磷酸(P-HPD,AI-2-磷酸的异构体)和辅酶A,确定与P结合的LsrF催化突变体的晶体结构-HPD,并确定反应产物。我们显示LsrF催化乙酰基从P-HPD转移到辅酶A,产生磷酸二羟基丙酮磷酸酯和乙酰辅酶A,这是两个关键的中心代谢产物。我们进一步提出,尽管与醛缩酶具有很强的结构同源性,LsrF仍可作为硫解酶起作用,这是该酶家族先前未描述的活性。通过这项工作,我们已经充分表征了AI-2在大肠杆菌中加工的生物学途径,该途径可用于淬灭AI-2并控制群体感应调控的细菌行为。

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