A Versatile Strategy for the Synthesis of 4,5-Dihydroxy-2,3-Pentanedione (DPD) and Related Compounds as Potential Modulators of Bacterial Quorum Sensing
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Simona Collina | Fabrizio Giordanetto | Dimitrios Tzalis | Anna Karawajczyk | Viviana Gatta | Päivi Tammela | Silvia Stotani | Federico Medda | Mohan Padmanaban | S. Collina | F. Giordanetto | Silvia Stotani | P. Tammela | F. Medda | A. Karawajczyk | Dimitrios Tzalis | Viviana Gatta | Mohan Padmanaban
[1] Kashmiri Lal,et al. Recent Advancements in 1,4-Disubstituted 1H-1,2,3-Triazoles as Potential Anticancer Agents. , 2016, Anti-cancer agents in medicinal chemistry.
[2] Giacomo Rossino,et al. Approaches for multi-gram scale isolation of enantiomers for drug discovery , 2017, Expert opinion on drug discovery.
[3] M. Hashemzadeh,et al. Triazole antifungals: a review. , 2015, Drugs of today.
[4] Rangappa S. Keri,et al. Triazole: A Promising Antitubercular Agent , 2015, Chemical biology & drug design.
[5] Ian T. Paulsen,et al. Antibiotic Discovery: Combatting Bacterial Resistance in Cells and in Biofilm Communities , 2015, Molecules.
[6] S·萨玛伊达尔,et al. Bicyclic heterocyclic derivatives as bromodomain inhibitors , 2015 .
[7] Tom Coenye,et al. Quorum sensing inhibitors as anti-biofilm agents. , 2014, Current pharmaceutical design.
[8] Yasuhisa Asano,et al. Cyanide‐free Enantioselective Synthesis of Nitriles: Synthetic Proof of a Biocatalytic Concept and Mechanistic Insights , 2014 .
[9] Hinna Hamid,et al. 1, 2, 3-Triazoles: scaffold with medicinal significance , 2014 .
[10] Alain Wagner,et al. Copper-chelating azides for efficient click conjugation reactions in complex media. , 2014, Angewandte Chemie.
[11] Kyoung-Seok Ryu,et al. Crystal structures of the LsrR proteins complexed with phospho-AI-2 and two signal-interrupting analogues reveal distinct mechanisms for ligand recognition. , 2013, Journal of the American Chemical Society.
[12] Yue Zheng,et al. Small Molecule Inhibitors of AI-2 Signaling in Bacteria: State-of-the-Art and Future Perspectives for Anti-Quorum Sensing Agents , 2013, International journal of molecular sciences.
[13] Ying Feng,et al. Design, Synthesis, and Structure–Activity Relationships of 3,4,5‐Trisubstituted 4,5‐Dihydro‐1,2,4‐oxadiazoles as TGR5 Agonists , 2013, ChemMedChem.
[14] Kim D Janda,et al. Mechanistic insights into the LsrK kinase required for autoinducer-2 quorum sensing activation. , 2013, Journal of the American Chemical Society.
[15] Reza Ghodssi,et al. AI-2 analogs and antibiotics: a synergistic approach to reduce bacterial biofilms , 2012, Applied Microbiology and Biotechnology.
[16] Hiroki Tsumoto,et al. Rapid discovery of highly potent and selective inhibitors of histone deacetylase 8 using click chemistry to generate candidate libraries. , 2012, Journal of medicinal chemistry.
[17] Jane R Kenny,et al. Discovery of potent and selective pyrazolopyrimidine janus kinase 2 inhibitors. , 2012, Journal of medicinal chemistry.
[18] K. Janda,et al. C4-alkoxy-HPD: a potent class of synthetic modulators surpassing nature in AI-2 quorum sensing. , 2012, Journal of the American Chemical Society.
[19] Kim D Janda,et al. Uncharacterized 4,5-dihydroxy-2,3-pentanedione (DPD) molecules revealed through NMR spectroscopy: implications for a greater signaling diversity in bacterial species. , 2012, Angewandte Chemie.
[20] A. Franz,et al. Catalytic stereoselective synthesis of diverse oxindoles and spirooxindoles from isatins. , 2012, ACS combinatorial science.
[21] William E Bentley,et al. Altering the communication networks of multispecies microbial systems using a diverse toolbox of AI-2 analogues. , 2012, ACS chemical biology.
[22] Y Wang,et al. Recent researches in triazole compounds as medicinal drugs. , 2012, Current medicinal chemistry.
[23] Sheng Luo,et al. Acid-base jointly promoted copper(I)-catalyzed azide-alkyne cycloaddition. , 2011, The Journal of organic chemistry.
[24] Fuyuhiko Inagaki,et al. A new procedure for the preparation of 2-vinylindoles and their [4+2] cycloaddition reaction , 2011 .
[25] Sota Okumura,et al. Generation of nitrile oxides from oximes using t-BuOI and their cycloaddition. , 2011, Organic letters.
[26] M. Chmielewski,et al. Direct, catalytic synthesis of carbapenams via cycloaddition/rearrangement cascade reaction: unexpected acetylenes' structure effect. , 2010, The Journal of organic chemistry.
[27] Saskia Nijmeijer,et al. Triazole ligands reveal distinct molecular features that induce histamine H4 receptor affinity and subtly govern H4/H3 subtype selectivity. , 2011, Journal of medicinal chemistry.
[28] João C Marques,et al. An efficient synthesis of the precursor of AI-2, the signalling molecule for inter-species quorum sensing. , 2011, Bioorganic & medicinal chemistry.
[29] Brian A. Mendelsohn,et al. Oxidation of α-oxo-oximes to nitrile oxides with hypervalent iodine reagents. , 2011, The Journal of organic chemistry.
[30] Rajeev Kharb,et al. Recent advances and future perspectives of triazole analogs as promising antiviral agents. , 2011, Mini reviews in medicinal chemistry.
[31] Marek Chmielewski,et al. Direct, catalytic synthesis of carbapenams via cycloaddition/rearrangement cascade reaction: unexpected acetylenes' structure effect. , 2010, The Journal of organic chemistry.
[32] C Liana Allen,et al. Catalytic acylation of amines with aldehydes or aldoximes. , 2010, Organic letters.
[33] Yuefei Hu,et al. Carboxylic acid-promoted copper(I)-catalyzed azide-alkyne cycloaddition. , 2010, The Journal of organic chemistry.
[34] B. Finlay,et al. Quorum sensing in bacterial virulence. , 2010, Microbiology.
[35] Yuefei Hu,et al. Copper(I) Acetate: A Structurally Simple but Highly Efficient Dinuclear Catalyst for Copper‐Catalyzed Azide‐Alkyne Cycloaddition , 2010 .
[36] Sally Freeman,et al. Synthesis and bioluminescence-inducing properties of autoinducer (S)-4,5-dihydroxypentane-2,3-dione and its enantiomer. , 2010, Bioorganic & medicinal chemistry letters.
[37] Aaron Aponick,et al. An Extremely Facile Synthesis of Furans, Pyrroles, and Thiophenes by the Dehydrative Cyclization of Propargyl Alcohols. , 2010 .
[38] Giuseppe Bifulco,et al. A novel potent nicotinamide phosphoribosyltransferase inhibitor synthesized via click chemistry. , 2010, Journal of medicinal chemistry.
[39] B. Bassler,et al. Bacterial quorum-sensing network architectures. , 2009, Annual review of genetics.
[40] Vincent Lee,et al. Biological screening of a diverse set of AI-2 analogues in Vibrio harveyi suggests that receptors which are involved in synergistic agonism of AI-2 and analogues are promiscuous. , 2009, Chemical communications.
[41] Martin G. Kociolek. Quorum-sensing inhibitors and biofilms , 2009 .
[42] Eva Bokor,et al. Synthesis and structure-activity relationships of C-glycosylated oxadiazoles as inhibitors of glycogen phosphorylase. , 2009, Bioorganic & medicinal chemistry.
[43] Ben L Feringa,et al. Phosphoramidite accelerated copper(i)-catalyzed [3 + 2] cycloadditions of azides and alkynes. , 2009, Chemical communications.
[44] Junguk Park,et al. An unexpected switch in the modulation of AI-2-based quorum sensing discovered through synthetic 4,5-dihydroxy-2,3-pentanedione analogues. , 2008, Journal of the American Chemical Society.
[45] Tobin J Dickerson,et al. Interspecies and interkingdom communication mediated by bacterial quorum sensing. , 2008, Chemical Society reviews.
[46] Guochen Jia,et al. Ruthenium-catalyzed azide-alkyne cycloaddition: scope and mechanism. , 2008, Journal of the American Chemical Society.
[47] C. Grey,et al. Poly(diiododiacetylene): preparation, isolation, and full characterization of a very simple poly(diacetylene). , 2008, Journal of the American Chemical Society.
[48] M. Parsek,et al. Quorum sensing and microbial biofilms. , 2008, Current topics in microbiology and immunology.
[49] Helen E Blackwell,et al. Modulation of bacterial quorum sensing with synthetic ligands: systematic evaluation of N-acylated homoserine lactones in multiple species and new insights into their mechanisms of action. , 2007, Journal of the American Chemical Society.
[50] A. Clatworthy,et al. Targeting virulence: a new paradigm for antimicrobial therapy , 2007, Nature Chemical Biology.
[51] N. Ahmed,et al. AI-2 quorum sensing affects antibiotic susceptibility in Streptococcus anginosus. , 2007, The Journal of antimicrobial chemotherapy.
[52] Peter Mayer,et al. Isolation of a copper(I) triazolide: a "click" intermediate. , 2007, Angewandte Chemie.
[53] Jeong Hwan Kim,et al. Phosphorylation and processing of the quorum-sensing molecule autoinducer-2 in enteric bacteria. , 2007, ACS chemical biology.
[54] Francesco De Sarlo,et al. 1,4-Diazabicyclo[2.2.2]octane (DABCO) as an Efficient Reagent for the Synthesis of Isoxazole Derivatives from Primary Nitro Compounds and Dipolarophiles: The Role of the Base , 2006 .
[55] Shawn R Campagna,et al. Autoinducer 2: a concentration‐dependent signal for mutualistic bacterial biofilm growth , 2006, Molecular microbiology.
[56] T. B. Rasmussen,et al. Quorum-sensing inhibitors as anti-pathogenic drugs. , 2006, International journal of medical microbiology : IJMM.
[57] Desmond O'Connor,et al. Pharmacokinetics and metabolism studies on (3-tert-butyl-7-(5-methylisoxazol-3-yl)-2-(1-methyl-1H-1,2,4-triazol-5-ylmethoxy) pyrazolo[1,5-d][1,2,4]triazine, a functionally selective GABA(A) alpha5 inverse agonist for cognitive dysfunction. , 2006, Bioorganic & medicinal chemistry letters.
[58] Bonnie L. Bassler,et al. Bacterially Speaking , 2006, Cell.
[59] Laurent Soulère,et al. A Baylis—Hillman/Ozonolysis Route Towards (.+-.) 4,5-Dihydroxy-2,3-pentanedione (DPD) and Analogues. , 2005 .
[60] B. Bassler,et al. Quorum sensing: cell-to-cell communication in bacteria. , 2005, Annual review of cell and developmental biology.
[61] H. Blackwell,et al. Small molecule inhibitors of bacterial quorum sensing and biofilm formation. , 2005, Journal of the American Chemical Society.
[62] Kathleen Marchal,et al. Chemical Synthesis of (S)-4,5-Dihydroxy-2,3-pentanedione, a Bacterial Signal Molecule Precursor, and Validation of Its Activity in Salmonella typhimurium* , 2005, Journal of Biological Chemistry.
[63] Shawn R Campagna,et al. An expeditious synthesis of DPD and boron binding studies. , 2005, Organic letters.
[64] Fahmi Himo,et al. Copper(I)-catalyzed synthesis of azoles. DFT study predicts unprecedented reactivity and intermediates. , 2005, Journal of the American Chemical Society.
[65] Ian Paterson,et al. A second-generation total synthesis of (+)-discodermolide: the development of a practical route using solely substrate-based stereocontrol. , 2005, The Journal of organic chemistry.
[66] B. Bassler,et al. Regulation of Uptake and Processing of the Quorum-Sensing Autoinducer AI-2 in Escherichia coli , 2005, Journal of bacteriology.
[67] Shawn R Campagna,et al. Salmonella typhimurium recognizes a chemically distinct form of the bacterial quorum-sensing signal AI-2. , 2004, Molecular cell.
[68] Kim D Janda,et al. Synthesis and biological validation of a ubiquitous quorum-sensing molecule. , 2004, Angewandte Chemie.
[69] Kristina M Smith,et al. Molecular mechanisms of bacterial quorum sensing as a new drug target. , 2003, Current opinion in chemical biology.
[70] Hiroaki Suga,et al. Library screening for synthetic agonists and antagonists of a Pseudomonas aeruginosa autoinducer. , 2003, Chemistry & biology.
[71] Bonnie L. Bassler,et al. Quorum-sensing regulators control virulence gene expression in Vibrio cholerae , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[72] B. Bassler,et al. Structural identification of a bacterial quorum-sensing signal containing boron , 2002, Nature.
[73] A J Elliott,et al. Systematic structure-based design and stereoselective synthesis of novel multisubstituted cyclopentane derivatives with potent antiinfluenza activity. , 2001, Journal of medicinal chemistry.
[74] J R Pruitt,et al. Design and synthesis of isoxazoline derivatives as factor Xa inhibitors. 1. , 1999, Journal of medicinal chemistry.
[75] M. Surette,et al. Quorum sensing in Escherichia coli, Salmonella typhimurium, and Vibrio harveyi: a new family of genes responsible for autoinducer production. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[76] J. Costerton,et al. The involvement of cell-to-cell signals in the development of a bacterial biofilm. , 1998, Science.
[77] Pei-Lin Wu,et al. Thermal Ring-Expansion of N-Acyl Cyclopropyl Imines. , 1994 .