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Journal Abstract Search


439 related items for PubMed ID: 17051653

  • 21. Synthesis, structure, spectra and reactivity of iron(III) complexes of facially coordinating and sterically hindering 3N ligands as models for catechol dioxygenases.
    Sundaravel K, Dhanalakshmi T, Suresh E, Palaniandavar M.
    Dalton Trans; 2008 Dec 28; (48):7012-25. PubMed ID: 19050788
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  • 22. Structure of catechol 2,3-dioxygenase gene from Alcaligenes eutrophus 335.
    Kang BS, Ha JY, Lim JC, Lee J, Kim CK, Min KR, Kim Y.
    Biochem Biophys Res Commun; 1998 Apr 28; 245(3):791-6. PubMed ID: 9588193
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  • 23. Ferredoxin-mediated reactivation of the chlorocatechol 2,3-dioxygenase from Pseudomonas putida GJ31.
    Tropel D, Meyer C, Armengaud J, Jouanneau Y.
    Arch Microbiol; 2002 Apr 28; 177(4):345-51. PubMed ID: 11889489
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  • 24. Catechol dioxygenases from Escherichia coli (MhpB) and Alcaligenes eutrophus (MpcI): sequence analysis and biochemical properties of a third family of extradiol dioxygenases.
    Spence EL, Kawamukai M, Sanvoisin J, Braven H, Bugg TD.
    J Bacteriol; 1996 Sep 28; 178(17):5249-56. PubMed ID: 8752345
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  • 25. Bacterial aromatic ring-cleavage enzymes are classified into two different gene families.
    Harayama S, Rekik M.
    J Biol Chem; 1989 Sep 15; 264(26):15328-33. PubMed ID: 2670937
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  • 26. Reaction coordinate analysis for beta-diketone cleavage by the non-heme Fe2+-dependent dioxygenase Dke1.
    Straganz GD, Nidetzky B.
    J Am Chem Soc; 2005 Sep 07; 127(35):12306-14. PubMed ID: 16131208
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  • 27. Nuclear Resonance Vibrational Spectroscopy Definition of Peroxy Intermediates in Catechol Dioxygenases: Factors that Determine Extra- versus Intradiol Cleavage.
    Babicz JT, Rogers MS, DeWeese DE, Sutherlin KD, Banerjee R, Böttger LH, Yoda Y, Nagasawa N, Saito M, Kitao S, Kurokuzu M, Kobayashi Y, Tamasaku K, Seto M, Lipscomb JD, Solomon EI.
    J Am Chem Soc; 2023 Jul 19; 145(28):15230-15250. PubMed ID: 37414058
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  • 28. Manganese(II) active site mutants of 3,4-dihydroxyphenylacetate 2,3-dioxygenase from Arthrobacter globiformis strain CM-2.
    Boldt YR, Whiting AK, Wagner ML, Sadowsky MJ, Que L, Wackett LP.
    Biochemistry; 1997 Feb 25; 36(8):2147-53. PubMed ID: 9047314
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  • 29. Quantitative structure-activity relationship for the cleavage of C3/C4-substituted catechols by a prototypal extradiol catechol dioxygenase with broad substrate specificity.
    Ishida T, Tanaka H, Horiike K.
    J Biochem; 2004 Jun 25; 135(6):721-30. PubMed ID: 15213248
    [Abstract] [Full Text] [Related]

  • 30. A functional model of extradiol-cleaving catechol dioxygenases: mimicking the 2-his-1-carboxylate facial triad.
    Paria S, Halder P, Paine TK.
    Inorg Chem; 2010 May 17; 49(10):4518-23. PubMed ID: 20392074
    [Abstract] [Full Text] [Related]

  • 31. Exploring the catalytic potential of the 3-His mononuclear nonheme Fe(II) center: discovery and characterization of an unprecedented maltol cleavage activity.
    Di Giuro CM, Buongiorno D, Leitner E, Straganz GD.
    J Inorg Biochem; 2011 Sep 17; 105(9):1204-11. PubMed ID: 21718656
    [Abstract] [Full Text] [Related]

  • 32. Salicylate 1,2-dioxygenase from Pseudaminobacter salicylatoxidans: crystal structure of a peculiar ring-cleaving dioxygenase.
    Matera I, Ferraroni M, Bürger S, Scozzafava A, Stolz A, Briganti F.
    J Mol Biol; 2008 Jul 25; 380(5):856-68. PubMed ID: 18572191
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  • 39. Characterization of the 3-O-methylgallate dioxygenase gene and evidence of multiple 3-O-methylgallate catabolic pathways in Sphingomonas paucimobilis SYK-6.
    Kasai D, Masai E, Miyauchi K, Katayama Y, Fukuda M.
    J Bacteriol; 2004 Aug 25; 186(15):4951-9. PubMed ID: 15262932
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