2007
DOI: 10.1007/s00775-007-0229-7
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NADH oxidase activity of rat and human liver xanthine oxidoreductase: potential role in superoxide production

Abstract: To characterise the NADH oxidase activity of both xanthine dehydrogenase (XD) and xanthine oxidase (XO) forms of rat liver xanthine oxidoreductase (XOR) and to evaluate the potential role of this mammalian enzyme as an O 2•-source, kinetics and electron paramagnetic resonance (EPR) spectroscopic studies were performed. A steady-state kinetics study of XD showed that it catalyses NADH oxidation, leading to the formation of one O 2•-molecule and half a H 2 O 2 molecule per NADH molecule, at rates 3 times those o… Show more

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Cited by 39 publications
(35 citation statements)
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“…The K m values of NADH oxidation and O2 production are not necessarily the same and a two- to three-fold variation for human milk XDH has been observed (39). While the K m value for NADH oxidation reported here is very close to the literature value (28 M) (32), the K m value for O2 generation is found to be twice the value (5.1 μM) reported recently (40); however, our V max value is higher. This discrepancy may be attributed to the different buffer solutions, enzyme conditions, and assays used.…”
Section: Discussionsupporting
confidence: 84%
“…The K m values of NADH oxidation and O2 production are not necessarily the same and a two- to three-fold variation for human milk XDH has been observed (39). While the K m value for NADH oxidation reported here is very close to the literature value (28 M) (32), the K m value for O2 generation is found to be twice the value (5.1 μM) reported recently (40); however, our V max value is higher. This discrepancy may be attributed to the different buffer solutions, enzyme conditions, and assays used.…”
Section: Discussionsupporting
confidence: 84%
“…In addition, some assays were conducted with deflavo-RLXO and deflavo-RLAO, two enzyme forms whose FAD center was chemically removed but that retain the molybdenum and Fe/S centers intact. 86,111 The presence of allopurinol completely inhibited the NO formation catalyzed by both native and deflavo forms of XO and XD of rat and human liver (not shown). Moreover, the NO formation rate was directly proportional to the XO and AO AFR, a ratio that reflects the concentration of XO/AO molecules with an active molybdenum center, per FAD center.…”
Section: ■ Experimental Proceduresmentioning
confidence: 81%
“…XO hydroxylates allopurinol to oxypurinol (1H-pyrazolo [3,4-d]pyrimidine-4,6-diol), which binds tightly to the reduced molybdenum, blocking it and inhibiting the XO hydroxylase activity [40,49,50]. The formation of the oxypurinol-XO complex, however, does not interfere with any reaction occurring at the two Fe/S or at the FAD site, as shown by the NADH oxidation by molecular oxygen (which occurs at the flavin site) in the presence of the inhibitor [51]. Therefore, the Fe/S and FAD of allopurinol-inhibited XO can be reduced with NADH, in spite of the molybdenum being blocked.…”
Section: Participation Of Xo and Aor Redox Centres In Nitrite Reductionmentioning
confidence: 99%
“…I. Dithionite reduces both enzymes, whereas NADH reduces only the XO, through the FAD site, leading to molybdenum reduction through intramolecular electron transfer [51]. Once the molybdenum is reduced, Mo 4?…”
Section: Site Of Nitrite Reductionmentioning
confidence: 99%