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1 ative distinction of CH3-group oxidation and dioxygenation.
2 actone from the ring fission product of 5NSA dioxygenation.
3 itrosyl hemoglobin rather than destroy it by dioxygenation.
4 ccurs most effectively via O(2)-dependent NO dioxygenation.
5 m in which peroxidative cleavage precedes AA dioxygenation.
6 were kinetically competent to participate in dioxygenation.
7 tive cleavage is not the initiating event in dioxygenation.
8 m in which peroxidative cleavage precedes AA dioxygenation.
9 of an electrochemical TEMPO-mediated allene dioxygenation.
10 o, alter the availability of O(2) for Nt-Cys dioxygenation.
12 g the molecular mechanisms involved in thiol dioxygenation and sets the stage for exploration of the
14 anism by which HbN recycles itself during NO dioxygenation and the reductase that participates in thi
15 mes are remarkable in that they catalyze two dioxygenations and two cyclizations of the native substr
16 n experiment and theory showed that rates of dioxygenation are determined by the enzymatic O2 activat
17 he oxidation of fluoranthene is initiated by dioxygenation at the C-1,2, C-2,3, and C-7,8 positions.
19 isomers, 2,6-dinitrotoluene, and naphthalene dioxygenation by NBDO varied considerably, the correlati
21 o mimic the bioinorganic chemistry of indole dioxygenation by TDO and IDO, challenging the widely acc
23 aromatic ring activation (monooxygenation vs dioxygenation), (ii) the type of EDO enzymes, and (iii)
24 or biodegradation pathways initiated via (i) dioxygenation, (ii) reduction, and (iii) CH3-group oxida
25 ncomitantly, the physiological role of thiol dioxygenation in prokaryotes and eukaryotes has been stu
26 ysis of OPP's inhibition of arachidonic acid dioxygenation indicated mixed inhibition toward the ferr
30 ited reactivity toward nitric oxide (NO) via dioxygenation [k(NOD)(RcoM) = 6 to 8 x 10(6) M(-1)s(-1)
35 Proteomic analysis revealed that tryptophan dioxygenation occurs on the abundant neutrophil protein
38 poxygenase-1 (15-hLO-1), which catalyzes the dioxygenation of 1,4-cis,cis-pentadiene-containing polyu
41 vity under mild conditions was validated for dioxygenation of alkynes to highly demanding labile synt
42 g biologically relevant oxidation reactions: dioxygenation of an indole derivative, and H-atom abstra
44 obalt-catalyzed regioselective unsymmetrical dioxygenation of gem-difluoroalkenes using phenols and m
46 orresponding isotope effects, especially for dioxygenation of N-substituted, aromatic contaminants, a
48 rtmentalization of hemoglobin and subsequent dioxygenation of nitric oxide may explain the vascular c
52 periment and theory also agreed well for the dioxygenation of nitrobenzene, which was associated with
53 os for the competing CH3-group oxidation and dioxygenation of nitrotoluenes by MnO4(-) were obtained
56 ant and mammalian lipoxygenases catalyze the dioxygenation of polyunsaturated fatty acids, which cont
58 LOXs) catalyze the regio- and stereospecific dioxygenation of polyunsaturated membrane-embedded fatty
59 alpha,beta-unsaturated lactone derived from dioxygenation of pyrene at an apical ring, 2H-naphtho[2,
63 Here, we systematically investigated the dioxygenation of two nitroaromatic compounds (nitrobenze
64 ed in the plastid envelope and catalyzed the dioxygenation of unsaturated membrane fatty acids, leadi
65 riants are created that exclusively catalyze dioxygenation or sequential monooxygenation chemistry.
67 19Z-hexaenoic acid (isomer IV), and a double dioxygenation product 10S,17S-dihydroxy-docosa-4Z,7Z,11E
69 kdown resulted in a small decrease in the NO dioxygenation rate (V(NO)), while depletion of ascorbate
72 olysis occurs secondarily to the accelerated dioxygenation reaction of plasma oxyhemoglobin with endo
73 is inactivated by cell-free hemoglobin in a dioxygenation reaction that also oxidizes hemoglobin to
78 Individual reduction, ligand binding, and NO dioxygenation reactions were examined at 20 degrees C, w
79 he endothelium, via accelerated nitric oxide dioxygenation reactions with free plasma hemoglobin.
80 The major site of dioxygenation is the C-2,3 dioxygenation route, which consists of 18 enzymatic step
83 enantioselective alkene aminooxygenation and dioxygenation that directly provide enantioenriched 2-fo
84 ygenase (IDO), the founding members, promote dioxygenation through a two-step monooxygenation pathway
85 s the rate law for 3,5-di-tert-butylcatechol dioxygenation when one begins with Pierpont's [VO(DBSQ)(
86 86-89% of 2,4-DNT transformation was due to dioxygenation while TNT was mostly reduced and 2,6-DNT r
87 ce, this is an experimental observation of a dioxygenation with O(2) mediated by a cobalt center in a
88 sotope effects for aniline and diphenylamine dioxygenation with those from abiotic oxidation by manga
89 a framework to explain cofactor-independent dioxygenation within a protein architecture generally em