Development of an inhibitive enzyme assay for copper

In this work the development of an inhibitive assay for copper using the molybdenum-reducing enzyme assay is presented. The enzyme is assayed using 12-molybdophosphoric acid at pH 5.0 as an electron acceptor substrate and NADH as the electron donor substrate. The enzyme converts the yellowish soluti...

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Main Authors: Abd. Shukor, Mohd. Yunus, Bakar, N. A., Othman, Ahmad Razi, Yunus, I., Shamaan, Nor Aripin, Syed, Mohd Arif
Format: Article
Language:English
Published: Triveni Enterprises 2009
Online Access:http://psasir.upm.edu.my/id/eprint/14003/1/Development%20of%20an%20inhibitive%20enzyme%20assay%20for%20copper.pdf
http://psasir.upm.edu.my/id/eprint/14003/
http://www.jeb.co.in/index.php?page=issue_toc&issue=200901_jan09_spl
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spelling my.upm.eprints.140032018-03-27T08:11:25Z http://psasir.upm.edu.my/id/eprint/14003/ Development of an inhibitive enzyme assay for copper Abd. Shukor, Mohd. Yunus Bakar, N. A. Othman, Ahmad Razi Yunus, I. Shamaan, Nor Aripin Syed, Mohd Arif In this work the development of an inhibitive assay for copper using the molybdenum-reducing enzyme assay is presented. The enzyme is assayed using 12-molybdophosphoric acid at pH 5.0 as an electron acceptor substrate and NADH as the electron donor substrate. The enzyme converts the yellowish solution into a deep blue solution. The assay is based on the ability of copper to inhibit the molybdenum-reducing enzyme from the molybdate-reducing Serratia sp. Strain DRY5. Other heavy metals tested did not inhibit the enzyme at 10 mg l(-1). The best model with high regression coefficient to measure copper inhibition is one-phase binding. The calculated IC50 (concentration causing 50% inhibition) is 0.099 mg l(-1) and the regression coefficient is 0.98. The comparative LC50, EC50 and IC50 data for copper in different toxicity tests show that the IC50 value for copper in this study is lower than those for immobilized urease, bromelain, Rainbow trout, R. meliloti, Baker's Yeast dehydrogenase activity Spirillum volutans, P. fluorescens, Aeromonas hydrophilia and synthetic activated sludge assays. However the IC50 value is higher than those for Ulva pertusa and papain assays, but within the reported range for Daphnia magna and Microtox assays. Triveni Enterprises 2009 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/14003/1/Development%20of%20an%20inhibitive%20enzyme%20assay%20for%20copper.pdf Abd. Shukor, Mohd. Yunus and Bakar, N. A. and Othman, Ahmad Razi and Yunus, I. and Shamaan, Nor Aripin and Syed, Mohd Arif (2009) Development of an inhibitive enzyme assay for copper. Journal of Environmental Biology, 30 (1). pp. 39-44. ISSN 0254-8704; ESSN: 2394-0379 http://www.jeb.co.in/index.php?page=issue_toc&issue=200901_jan09_spl
institution Universiti Putra Malaysia
building UPM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Putra Malaysia
content_source UPM Institutional Repository
url_provider http://psasir.upm.edu.my/
language English
description In this work the development of an inhibitive assay for copper using the molybdenum-reducing enzyme assay is presented. The enzyme is assayed using 12-molybdophosphoric acid at pH 5.0 as an electron acceptor substrate and NADH as the electron donor substrate. The enzyme converts the yellowish solution into a deep blue solution. The assay is based on the ability of copper to inhibit the molybdenum-reducing enzyme from the molybdate-reducing Serratia sp. Strain DRY5. Other heavy metals tested did not inhibit the enzyme at 10 mg l(-1). The best model with high regression coefficient to measure copper inhibition is one-phase binding. The calculated IC50 (concentration causing 50% inhibition) is 0.099 mg l(-1) and the regression coefficient is 0.98. The comparative LC50, EC50 and IC50 data for copper in different toxicity tests show that the IC50 value for copper in this study is lower than those for immobilized urease, bromelain, Rainbow trout, R. meliloti, Baker's Yeast dehydrogenase activity Spirillum volutans, P. fluorescens, Aeromonas hydrophilia and synthetic activated sludge assays. However the IC50 value is higher than those for Ulva pertusa and papain assays, but within the reported range for Daphnia magna and Microtox assays.
format Article
author Abd. Shukor, Mohd. Yunus
Bakar, N. A.
Othman, Ahmad Razi
Yunus, I.
Shamaan, Nor Aripin
Syed, Mohd Arif
spellingShingle Abd. Shukor, Mohd. Yunus
Bakar, N. A.
Othman, Ahmad Razi
Yunus, I.
Shamaan, Nor Aripin
Syed, Mohd Arif
Development of an inhibitive enzyme assay for copper
author_facet Abd. Shukor, Mohd. Yunus
Bakar, N. A.
Othman, Ahmad Razi
Yunus, I.
Shamaan, Nor Aripin
Syed, Mohd Arif
author_sort Abd. Shukor, Mohd. Yunus
title Development of an inhibitive enzyme assay for copper
title_short Development of an inhibitive enzyme assay for copper
title_full Development of an inhibitive enzyme assay for copper
title_fullStr Development of an inhibitive enzyme assay for copper
title_full_unstemmed Development of an inhibitive enzyme assay for copper
title_sort development of an inhibitive enzyme assay for copper
publisher Triveni Enterprises
publishDate 2009
url http://psasir.upm.edu.my/id/eprint/14003/1/Development%20of%20an%20inhibitive%20enzyme%20assay%20for%20copper.pdf
http://psasir.upm.edu.my/id/eprint/14003/
http://www.jeb.co.in/index.php?page=issue_toc&issue=200901_jan09_spl
_version_ 1643825501409640448
score 13.211869