• Lietuvių
    • English
  • Lietuvių 
    • Lietuvių
    • English
  • Prisijungti
Peržiūrėti įrašą 
  •   DSpace pagrindinis
  • Mokslinės publikacijos (PDB) / Scientific publications (PDB)
  • Moksliniai ir apžvalginiai straipsniai / Research and Review Articles
  • Straipsniai Web of Science ir/ar Scopus referuojamuose leidiniuose / Articles in Web of Science and/or Scopus indexed sources
  • Peržiūrėti įrašą
  •   DSpace pagrindinis
  • Mokslinės publikacijos (PDB) / Scientific publications (PDB)
  • Moksliniai ir apžvalginiai straipsniai / Research and Review Articles
  • Straipsniai Web of Science ir/ar Scopus referuojamuose leidiniuose / Articles in Web of Science and/or Scopus indexed sources
  • Peržiūrėti įrašą
JavaScript is disabled for your browser. Some features of this site may not work without it.

Intensification of biocatalytical processes by synergistic substrate conversion. Fungal peroxidase catalyzed n-hydroxy derivative oxidation in presence of 10-Propyl sulfonic acid phenoxazine

Thumbnail
Data
2009
Autorius
Kulys, Juozas
Dapkūnas, Žilvinas
Stupak, Robert
Metaduomenys
Rodyti detalų aprašą
Santrauka
Many industrial pollutants, xenobiotics, and industry-important compounds are known to be oxidized by peroxidases. It has been shown that highly efficient peroxidase substrates are able to enhance the oxidation of low reactive substrate by acting as mediators. To explore this effect, the oxidation of two N-hydroxy derivatives, i.e., N-hydroxy-N-phenyl-acetamide (HPA) and N-hydroxy-N-phenyl-carbamic acid methyl ester (HPCM) catalyzed by recombinant Coprinus cinereus (rCiP) peroxidase has been studied in presence of efficient substrate 3-(4a,10a-dihydro- phenoxazin-10-yl)-propane-1-sulfonic acid (PPSA) at pH 8.5. The bimolecular constant of PPSA cation radical reaction with HPA was estimated to be (2.5 +/- 0.2)center dot 10(7) M-1 s(-1) and for HPCM was even higher. The kinetic measurements show that rCiP-catalyzed oxidation of HPA and HPCM can increase up to 33,000 times and 5,500 times in the presence of equivalent concentration of high reactive substrate PPSA. The mathematical model of synergistic rCiP-catalyzed HPA-PPSA and HPCM-PPSA oxidation was proposed. Experimentally obtained rate constants were in good agreement with those calculated from the model confirming the synergistic scheme of the substrate oxidation. In order to explain the different reactivity of substrates, the docking of substrates in the active site of the enzyme was calculated. Molecular dynamic calculations show that the enzyme-substrate complexes are structurally stable. The high reactive PPSA exhibited higher affinity to enzyme active site than HPA and HPCM. Furthermore, the orientation of HPA and HPCM was not favorable for proton transfer to the distal histidine, and different substrate reactivity was explained by these diversities.
Paskelbimo data (metai)
2009
URI
https://etalpykla.vilniustech.lt/handle/123456789/123966
Kolekcijos
  • Straipsniai Web of Science ir/ar Scopus referuojamuose leidiniuose / Articles in Web of Science and/or Scopus indexed sources [7946]

 

 

Naršyti

Visame DSpaceRinkiniai ir kolekcijosPagal išleidimo datąAutoriaiAntraštėsTemos / Reikšminiai žodžiai InstitucijaFakultetasKatedra / institutasTipasŠaltinisLeidėjasTipas (PDB/ETD)Mokslo sritisStudijų kryptisVILNIUS TECH mokslinių tyrimų prioritetinės kryptys ir tematikosLietuvos sumanios specializacijosŠi kolekcijaPagal išleidimo datąAutoriaiAntraštėsTemos / Reikšminiai žodžiai InstitucijaFakultetasKatedra / institutasTipasŠaltinisLeidėjasTipas (PDB/ETD)Mokslo sritisStudijų kryptisVILNIUS TECH mokslinių tyrimų prioritetinės kryptys ir tematikosLietuvos sumanios specializacijos

Asmeninė paskyra

PrisijungtiRegistruotis