نتایج جستجو برای: oxalate oxidase

تعداد نتایج: 55773  

2009
Vijayalakshmi Thamilselvan Mani Menon Sivagnanam Thamilselvan

Thamilselvan V, Menon M, Thamilselvan S. Oxalate-induced activation of PKCand regulates NADPH oxidase-mediated oxidative injury in renal tubular epithelial cells. Am J Physiol Renal Physiol 297: F1399–F1410, 2009. First published August 19, 2009; doi:10.1152/ajprenal.00051.2009.—Oxalate-induced oxidative stress contributes to cell injury and promotes renal deposition of calcium oxalate crystals...

Journal: :The Plant cell 2012
Justin Foster Hyun Uk Kim Paul A Nakata John Browse

Oxalate is produced by several catabolic pathways in plants. The best characterized pathway for subsequent oxalate degradation is via oxalate oxidase, but some species, such as Arabidopsis thaliana, have no oxalate oxidase activity. Previously, an alternative pathway was proposed in which oxalyl-CoA synthetase (EC 6.2.1.8) catalyzes the first step, but no gene encoding this function has been fo...

2017
John M Goodwin Hassan Rana Joan Ndungu Gaurab Chakrabarti Ellen W Moomaw

Oxalate oxidase is a manganese containing enzyme that catalyzes the oxidation of oxalate to carbon dioxide in a reaction that is coupled with the reduction of oxygen to hydrogen peroxide. Oxalate oxidase from Ceriporiopsis subvermispora (CsOxOx) is the first fungal and bicupin enzyme identified that catalyzes this reaction. Potential applications of oxalate oxidase for use in pancreatic cancer ...

Journal: :The Biochemical journal 1999
L Requena S Bornemann

Oxalate oxidase (EC 1.2.3.4) catalyses the conversion of oxalate and dioxygen into CO(2) and H(2)O(2). The barley (Hordeum vulgare) seedling root enzyme was purified to homogeneity and shown by metal analysis and EPR spectroscopy to contain Mn(II) at up to 0.80 atom per subunit. The involvement of Mn and neither flavin, Cu nor Fe in the direct conversion of dioxygen to H(2)O(2) makes oxalate ox...

Journal: :Nephrology, dialysis, transplantation : official publication of the European Dialysis and Transplant Association - European Renal Association 2011
Naim M Maalouf Beverley Adams Huet Andreas Pasch John C Lieske John R Asplin Roswitha Siener Albrecht Hesse Jean-Marc Nuoffer Felix J Frey John Knight Ross P Holmes Joseph E Zerwekh Olivier Bonny

BACKGROUND Hyperoxaluria is a major risk factor for kidney stone formation. Although urinary oxalate measurement is part of all basic stone risk assessment, there is no standardized method for this measurement. METHODS Urine samples from 24-h urine collection covering a broad range of oxalate concentrations were aliquoted and sent, in duplicates, to six blinded international laboratories for ...

Journal: :Plant signaling & behavior 2013
Priyamvada Voothuluru Hallie J Thompson Sherry A Flint-Garcia Robert E Sharp

A previous study of maize primary roots under water stress showed pronounced increases in oxalate oxidase activity and apoplastic hydrogen peroxide in the apical region of the growth zone where cell elongation is maintained. We examined whether increased oxalate oxidase activity in water-stressed roots is conserved across diverse lines of maize and rice. The maize lines exhibited varied pattern...

Journal: :The Indian journal of medical research 2008
Savina Godara C S Pundir

BACKGROUND & OBJECTIVE Although the measurement of oxalate in urine and serum by Amaranthus leaf oxalate oxidase immobilized on free arylamine glass beads is highly sensitive and specific, the handling of glass beads is tedious and cumbersome. The present study was undertaken to overcome this problem. METHODS Partially purified Amaranthus spinosus leaf oxalate oxidase was immobilized through ...

2017
John M. Goodwin John Marston Goodwin Ellen W. Moomaw

................................................................................................................ iii TABLE OF CONTENTS .............................................................................................. iv LIST OF ABBREVIATIONS ........................................................................................ x CHAPTER 1: INTRODUCTION ..............................

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