scholarly journals Deazaflavin reductive photocatalysis involves excited semiquinone radicals

2020 ◽  
Vol 11 (1) ◽  
Author(s):  
Andreas Graml ◽  
Tomáš Neveselý ◽  
Roger Jan Kutta ◽  
Radek Cibulka ◽  
Burkhard König
Keyword(s):  
1998 ◽  
Vol 38 (6) ◽  
pp. 147-154 ◽  
Author(s):  
Hideo Utsumi ◽  
Sang-Kuk Han ◽  
Kazuhiro Ichikawa

Generation of hydroxyl radicals, one of the major active species in ozonation of water was directly observed with a spin-trapping/electron spin resonance (ESR) technique using 5,5-dimethyl-1-pyrrolineN-oxide (DMPO) as a spin-trapping reagent. Hydroxyl radical were trapped with DMPO as a stable radical, DMPO-OH. Eighty μM of ozone produced 1.08 X 10-6M of DMPO-OH, indicating that 1.4% of •OH is trapped with DMPO. Generation rate of DMPO-OH was determined by ESR/stopped-flow measurement. Phenol derivatives increased the amount and generation rate of DMPO-OH, indicating that phenol derivatives enhance •OH generation during ozonation of water. Ozonation of 2,3-, 2,5-, 2,6-dichlorophenol gave an ESR spectra of triplet lines whose peak height ratio were 1:2:1. ESR parameters of the triplet lines agreed with those of the corresponding dichloro-psemiquinone radical. Ozonation of 2,4,5- and 2,4,6-trichlorophenol gave the same spectra as those of 2,5- and 2,6-dichlorophenol, respectively, indicating that a chlorine group in p-position is substituted with a hydroxy group during ozonation. Amounts of the radical increased in an ozone-concentration dependent manner and were inhibited by addition of hydroxyl radical scavengers. These results suggest that p-semiquinone radicals are generated from the chlorophenols by hydroxyl radicals during ozonation. The p-semiquinone radicals were at least partly responsible for enhancements of DMPO-OH generation.


2018 ◽  
Vol 19 (1) ◽  
pp. 391-402 ◽  
Author(s):  
Krešimir Molčanov ◽  
Christian Jelsch ◽  
Bruno Landeros ◽  
Jesús Hernández-Trujillo ◽  
Emmanuel Wenger ◽  
...  
Keyword(s):  

2019 ◽  
Vol 151 (23) ◽  
pp. 235103 ◽  
Author(s):  
Nils Pompe ◽  
Jing Chen ◽  
Boris Illarionov ◽  
Sabrina Panter ◽  
Markus Fischer ◽  
...  

1985 ◽  
Vol 40 (7-8) ◽  
pp. 535-538 ◽  
Author(s):  
Martin G. Peter ◽  
Hartmut B. Stegmann ◽  
Hoang Dao-Ba ◽  
Klaus Scheffler

Abstract ESR-spectra were recorded during the oxidation of N-acetyldopamine and N-β-alanyldopamine in aqueous solutions. Semiquinone radicals were detected under conditions of spin stabilization by Zn2+ ions. The appearance of the spectra was the same in the presence or in the absence of proteins. No evidence was obtained for the formation of products that could have arisen eventually from intermolecular Michael-type addition of nitrogen nucleophiles.


ChemBioChem ◽  
2019 ◽  
Vol 20 (13) ◽  
pp. 1614-1614 ◽  
Author(s):  
Dan Su ◽  
Mohammad Pabel Kabir ◽  
Yoelvis Orozco‐Gonzalez ◽  
Samer Gozem ◽  
Giovanni Gadda

1988 ◽  
Vol 251 (2) ◽  
pp. 365-372 ◽  
Author(s):  
V Günzler ◽  
H M Hanauske-Abel ◽  
R Myllylä ◽  
D D Kaska ◽  
A Hanauske ◽  
...  

The anthracyclines doxorubicin and daunorubicin were found to act as irreversible inhibitors of prolyl 4-hydroxylase. The reaction rate for enzyme from both chick and human origin was first order, the concentration of inhibitor giving 50% inhibition being 60 microM for both compounds after 1 h. The effect was dependent on the presence of iron ions in the reaction mixture. Inactivation could be prevented by addition of high concentrations of ascorbate, but not 2-oxoglutarate, before the inactivation period. The same results were obtained with competitive analogues of these cosubstrates. Lysyl hydroxylase from chick embryos was also susceptible to inactivation. Its activity was decreased by 50% after incubation for 1 h with a 150 microM concentration of the inhibitors. When chick-embryo prolyl 4-hydroxylase was incubated with [14-14C]doxorubicin, both enzyme subunits were radioactively labelled, about 70% of the total radioactivity being found in the alpha-subunit. Since the anthracyclines are known to undergo a redox reaction generating semiquinone radicals with Fe3+ only, the results suggest that the enzyme-bound iron ion is oxidized to a tervalent intermediate in uncoupled reaction cycles. The data also suggest that both enzyme subunits contribute to the catalytic site of prolyl 4-hydroxylase.


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