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Three-dimensional structures catalase

Thiosulfate cyanide sulfurtransferase symmetry in 78 TTiiouridine 234 Three-dimensional structures of aconitase 689 adenylate kinase 655 aldehyde oxido-reductase 891 D-amino acid oxidase 791 a-amylase, pancreatic 607 aspartate aminotransferase 57,135 catalytic intermediates 752 aspartate carbamyltransferase 348 aspartate chemoreceptor 562 bacteriophage P22 66 cadherin 408 calmodulin 317 carbonic acid anhydrase I 679 carboxypeptidase A 64 catalase 853 cholera toxin 333, 546 chymotrypsin 611 citrate synthase 702, 703 cutinase 134 cyclosporin 488 cytochrome c 847 cytochrome c peroxidase 849 dihydrofolate reductase 807 DNA 214, 223,228,229, 241 DNA complex... [Pg.935]

Catalase is also able to oxidize a few small molecules, in particular ethanol (the pro-R-hydrogen atom is stereospecifically removed as in the alcohol dehydrogenase-mediated oxidation). Several heme-catalase three-dimensional structures are available from the fungus Penicillium Vitalefrom beef liver, or from the bacterium Microccocus lysodeikticus The proximal ligand site of these heme-catalases is occupied by a tyrosine residue (Tyr-357 and Tyr-339 in beef liver and bacterial catalases, respectively) with an Fe—O distance of 1.9 A (see Figure 3). [Pg.274]

Based on these observations, Wang and Caruso [237] have described an effective method for the fabrication of robust zeolitic membranes with three-dimensional interconnected macroporous (1.2 pm in diameter) stmctures from mesoporous silica spheres previously seeded with silicalite-1 nanoparticles subjected to a conventional hydrothermal treatment. Subsequently, the zeolite membrane modification via the layer-by-layer electrostatic assembly of polyelectrolytes and catalase on the 3D macroporous stmcture results in a biomacromolecule-functionalized macroporous zeolitic membrane bioreactor suitable for biocatalysts investigations. The enzyme-modified membranes exhibit enhanced reaction stability and also display enzyme activities (for H2O2 decomposition) three orders of magnitude higher than their nonporous planar film counterparts assembled on silica substrates. Therefore, the potential of such structures as bioreactors is enormous. [Pg.305]


See other pages where Three-dimensional structures catalase is mentioned: [Pg.75]    [Pg.75]    [Pg.25]    [Pg.370]    [Pg.712]    [Pg.335]    [Pg.57]   
See also in sourсe #XX -- [ Pg.853 ]

See also in sourсe #XX -- [ Pg.853 ]

See also in sourсe #XX -- [ Pg.853 ]

See also in sourсe #XX -- [ Pg.853 ]




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Three structures

Three-dimensional structure

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