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Synthesis and biological evaluation of triazole-containing N-acyl homoserine lactones as quorum sensing modulatorst

机译:含三唑的N-酰基高丝氨酸内酯作为群体感应调节剂的合成及生物学评价

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摘要

Many bacterial species are capable of assessing their local population densities through a cell-cell signaling mechanism termed quorum sensing (QS).This intercellular communication process is mediated by small molecule or peptide ligands and their cognate protein receptors.Numerous pathogens use QS to initiate virulence once they achieve a threshold cell number on a host.Consequently,approaches to intercept QS have attracted considerable attention as potential anti-infective therapies.Our interest in the development of small molecule tools to modulate QS pathways motivated us to evaluate triazole-containing analogs of natural N-acyl L-homoserine lactone (AHL) signals as non-native QS agonists and antagonists in Gram-negative bacteria.We synthesized 72 triazole derivatives of five broad structure types in high yields and purities using efficient Cu(i)-catalyzed azide-alkyne couplings.These compounds were evaluated for their ability to activate or inhibit two QS receptors from two prevalent pathogens -LasR from Pseudomonas aeruginosa and AbaR from Acinetobacter baumannii - using bacterial reporter strains.Several triazole derivatives were identified that were capable of strongly modulating the activity of LasR and AbaR.These compounds represent a new and synthetically accessible class of AHL analogs,and could find utility as chemical tools to study QS and its role in bacterial virulence.
机译:许多细菌能够通过称为群体感应(Quorum Sensing,QS)的细胞-细胞信号传导机制评估其局部种群密度,这种细胞间通讯过程是由小分子或肽配体及其同源蛋白受体介导的,许多病原体利用QS来引发毒力。一旦它们达到宿主的阈值细胞数。因此,作为潜在的抗感染疗法,拦截QS的方法引起了相当大的关注。我们对调节QS途径的小分子工具的开发兴趣促使我们评估含三唑的类似物。天然N-酰基L-高丝氨酸内酯(AHL)信号作为革兰氏阴性细菌的非天然QS激动剂和拮抗剂。我们使用高效的Cu(i)催化的叠氮化物以高收率和高纯度合成了72种五种广泛结构类型的三唑衍生物。 -炔烃偶联。评估了这些化合物激活或抑制两个流行期的两个QS受体的能力使用细菌报告菌株筛选出铜绿假单胞菌的LasR和鲍曼不动杆菌的AbaR,鉴定出几种能够强烈调节LasR和AbaR活性的三唑衍生物,这些化合物代表了一种新型且可合成的AHL类似物,并且可以找到有用的化学工具来研究QS及其在细菌毒力中的作用。

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  • 来源
    《Organic & biomolecular chemistry》 |2013年第6期|938-954|共17页
  • 作者单位

    Department of Chemistry,University of Wisconsin-Madison,1101 University Ave.,Madison,WI 53706,USA;

    Department of Chemistry,Technical University of Denmark,DK-2800 Kgs.Lyngby,Denmark;

    Department of Chemistry,Technical University of Denmark,DK-2800 Kgs.Lyngby,Denmark;

    Department of Chemistry,Technical University of Denmark,DK-2800 Kgs.Lyngby,Denmark;

    Department of International Health,Immunology,and Microbiology,Faculty of Health Sciences,University of Copenhagen,DK-2200 Copenhagen,Denmark;

    Department of Chemistry,University of Wisconsin-Madison,1101 University Ave.,Madison,WI 53706,USA;

    Department of International Health,Immunology,and Microbiology,Faculty of Health Sciences,University of Copenhagen,DK-2200 Copenhagen,Denmark,Singapore Centre on Environmental Life Sciences Engineering,Nanyang Technological University,Singapore 637551,Singapore;

    Department of Chemistry,Technical University of Denmark,DK-2800 Kgs.Lyngby,Denmark,Singapore Centre on Environmental Life Sciences Engineering,Nanyang Technological University,Singapore 637551,Singapore;

    Department of Chemistry,University of Wisconsin-Madison,1101 University Ave.,Madison,WI 53706,USA;

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