4qoq Citations

Unprecedented access of phenolic substrates to the heme active site of a catalase: substrate binding and peroxidase-like reactivity of Bacillus pumilus catalase monitored by X-ray crystallography and EPR spectroscopy.

Proteins 83 853-66 (2015)
Related entries: 4qol, 4qom, 4qon, 4qoo, 4qop, 4qor

Cited: 9 times
EuropePMC logo PMID: 25663126

Abstract

Heme-containing catalases and catalase-peroxidases catalyze the dismutation of hydrogen peroxide as their predominant catalytic activity, but in addition, individual enzymes support low levels of peroxidase and oxidase activities, produce superoxide, and activate isoniazid as an antitubercular drug. The recent report of a heme enzyme with catalase, peroxidase and penicillin oxidase activities in Bacillus pumilus and its categorization as an unusual catalase-peroxidase led us to investigate the enzyme for comparison with other catalase-peroxidases, catalases, and peroxidases. Characterization revealed a typical homotetrameric catalase with one pentacoordinated heme b per subunit (Tyr340 being the axial ligand), albeit in two orientations, and a very fast catalatic turnover rate (kcat  = 339,000 s(-1) ). In addition, the enzyme supported a much slower (kcat  = 20 s(-1) ) peroxidatic activity utilizing substrates as diverse as ABTS and polyphenols, but no oxidase activity. Two binding sites, one in the main access channel and the other on the protein surface, accommodating pyrogallol, catechol, resorcinol, guaiacol, hydroquinone, and 2-chlorophenol were identified in crystal structures at 1.65-1.95 Å. A third site, in the heme distal side, accommodating only pyrogallol and catechol, interacting with the heme iron and the catalytic His and Arg residues, was also identified. This site was confirmed in solution by EPR spectroscopy characterization, which also showed that the phenolic oxygen was not directly coordinated to the heme iron (no low-spin conversion of the Fe(III) high-spin EPR signal upon substrate binding). This is the first demonstration of phenolic substrates directly accessing the heme distal side of a catalase.

Reviews - 4qoq mentioned but not cited (1)

  1. Monofunctional Heme-Catalases. Hansberg W. Antioxidants (Basel) 11 2173 (2022)


Articles citing this publication (8)

  1. Spectroscopic and Crystallographic Evidence for the Role of a Water-Containing H-Bond Network in Oxidase Activity of an Engineered Myoglobin. Petrik ID, Davydov R, Ross M, Zhao X, Hoffman B, Lu Y. J Am Chem Soc 138 1134-1137 (2016)
  2. Oxidation pathways underlying the pro-oxidant effects of apigenin. Andueza A, García-Garzón A, Ruiz de Galarreta M, Ansorena E, Iraburu MJ, López-Zabalza MJ, Martínez-Irujo JJ. Free Radic Biol Med 87 169-180 (2015)
  3. α-Chymotrypsin regulates free fatty acids and UCHL-1 to ameliorate N-methyl nitrosourea induced mammary gland carcinoma in albino wistar rats. Rani A, Roy S, Singh M, Devi U, Yadav RK, Gautam S, Rawat JK, Ansari MN, Saeedan AS, Prakash A, Kaithwas G. Inflammopharmacology 24 277-286 (2016)
  4. Enhancing Mn(II)-Binding and Manganese Peroxidase Activity in a Designed Cytochrome c Peroxidase through Fine-Tuning Secondary-Sphere Interactions. Hosseinzadeh P, Mirts EN, Pfister TD, Gao YG, Mayne C, Robinson H, Tajkhorshid E, Lu Y. Biochemistry 55 1494-1502 (2016)
  5. Heterologous expression and characterization of a new heme-catalase in Bacillus subtilis 168. Philibert T, Rao Z, Yang T, Zhou J, Huang G, Irene K, Samuel N. J Ind Microbiol Biotechnol 43 729-740 (2016)
  6. Identification and Expression Profiling of Two Saudi Arabia Catalase Genes from Wheat and Barley in Response to Abiotic and Hormonal Stresses. Ghorbel M, Besbes M, Haddaji N, Bouali N, Brini F. Antioxidants (Basel) 11 2208 (2022)
  7. Proteomic Shifts Reflecting Oxidative Stress and Reduced Capacity for Protein Synthesis, and Alterations to Mitochondrial Membranes in Neurospora crassa Lacking VDAC. Shuvo SR, Motnenko A, Krokhin OV, Spicer V, Court DA. Microorganisms 10 198 (2022)
  8. Identification of coding sequence and its use for functional and structural characterization of catalase from Phyllanthus emblica. Sharma S, Hooda V. Bioinformation 14 8-14 (2018)