Characterization of bacillus cereus BM1 with protease activity

Microbial alkaline proteases dominate the world enzyme market, accounting fornearly two-thirds shares of the detergent industry. To date, Bacillus species have beenknown to produce a substantial amount of extracellular proteases which gain applicationin commercial industry. A protease producing bact...

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Main Authors: Huyop, Fahrul Zaman, Mienda, Bashir Sajo
Format: Article
Published: 2013
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Online Access:http://eprints.utm.my/id/eprint/40267/
http://www.academia.edu/4270301/Characterization_of_Bacillus_cereus_BM1_with_Protease_Activity
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spelling my.utm.402672019-03-17T04:21:48Z http://eprints.utm.my/id/eprint/40267/ Characterization of bacillus cereus BM1 with protease activity Huyop, Fahrul Zaman Mienda, Bashir Sajo Q Science Microbial alkaline proteases dominate the world enzyme market, accounting fornearly two-thirds shares of the detergent industry. To date, Bacillus species have beenknown to produce a substantial amount of extracellular proteases which gain applicationin commercial industry. A protease producing bacterium was isolated from the eye of seabass, for the first time, in an attempt to search for microbial biocatalyst that is detergentcompatible. The isolate was characterized based on 16S rRNA gene sequence homologyand Biolog Gen III microplate system. The results for identification indicate that theisolate has 97% sequence identity to Bacillus cereus with regard to 16S rRNA genesequence homology which ultimately tally with the result of Biolog system, and hencedesignated as Bacillus cereus BM1. Moreover, protease produced by the isolate BM1 wasassayed according to an established method. Subsequently the protease was partiallycharacterized on the basis of temperature and pH requirements. Further characterizationevaluated the effects of different metal ions (5mM), EDTA (5mM), NaCl (Up to 15%w/v)and commercial detergent (up to 10%w/v) on protease activity and/or stability. The resultsindicate that the Bacillus cereus BM1 produced a protease that is stable in alkaline pHrange of 8-12, with optimum at pH 8 when incubated at 60 o C for 1 hr. The protease wasalso stable at temperature ranges from 40-70 o C, with optimum at 60 o C when incubated for1 hr. It shows activity in the presence of EDTA, as metal chelator suggesting that it is nota metalloprotease. Furthermore, none of the metal ions tested enhances protease activityabove 100% from the control. The protease was also found to be stable in the presence ofNaCl and commercial detergent. The results of partial characterization of the enzymeindicate that it is an alkaline, thermostable, halotolerant and detergent compatible nonmetalloprotease. This suggests that it will find application in detergent industry. 2013 Article PeerReviewed Huyop, Fahrul Zaman and Mienda, Bashir Sajo (2013) Characterization of bacillus cereus BM1 with protease activity. Research in Biotechnology, 4 (3). 07-19. ISSN 2229-791X http://www.academia.edu/4270301/Characterization_of_Bacillus_cereus_BM1_with_Protease_Activity
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic Q Science
spellingShingle Q Science
Huyop, Fahrul Zaman
Mienda, Bashir Sajo
Characterization of bacillus cereus BM1 with protease activity
description Microbial alkaline proteases dominate the world enzyme market, accounting fornearly two-thirds shares of the detergent industry. To date, Bacillus species have beenknown to produce a substantial amount of extracellular proteases which gain applicationin commercial industry. A protease producing bacterium was isolated from the eye of seabass, for the first time, in an attempt to search for microbial biocatalyst that is detergentcompatible. The isolate was characterized based on 16S rRNA gene sequence homologyand Biolog Gen III microplate system. The results for identification indicate that theisolate has 97% sequence identity to Bacillus cereus with regard to 16S rRNA genesequence homology which ultimately tally with the result of Biolog system, and hencedesignated as Bacillus cereus BM1. Moreover, protease produced by the isolate BM1 wasassayed according to an established method. Subsequently the protease was partiallycharacterized on the basis of temperature and pH requirements. Further characterizationevaluated the effects of different metal ions (5mM), EDTA (5mM), NaCl (Up to 15%w/v)and commercial detergent (up to 10%w/v) on protease activity and/or stability. The resultsindicate that the Bacillus cereus BM1 produced a protease that is stable in alkaline pHrange of 8-12, with optimum at pH 8 when incubated at 60 o C for 1 hr. The protease wasalso stable at temperature ranges from 40-70 o C, with optimum at 60 o C when incubated for1 hr. It shows activity in the presence of EDTA, as metal chelator suggesting that it is nota metalloprotease. Furthermore, none of the metal ions tested enhances protease activityabove 100% from the control. The protease was also found to be stable in the presence ofNaCl and commercial detergent. The results of partial characterization of the enzymeindicate that it is an alkaline, thermostable, halotolerant and detergent compatible nonmetalloprotease. This suggests that it will find application in detergent industry.
format Article
author Huyop, Fahrul Zaman
Mienda, Bashir Sajo
author_facet Huyop, Fahrul Zaman
Mienda, Bashir Sajo
author_sort Huyop, Fahrul Zaman
title Characterization of bacillus cereus BM1 with protease activity
title_short Characterization of bacillus cereus BM1 with protease activity
title_full Characterization of bacillus cereus BM1 with protease activity
title_fullStr Characterization of bacillus cereus BM1 with protease activity
title_full_unstemmed Characterization of bacillus cereus BM1 with protease activity
title_sort characterization of bacillus cereus bm1 with protease activity
publishDate 2013
url http://eprints.utm.my/id/eprint/40267/
http://www.academia.edu/4270301/Characterization_of_Bacillus_cereus_BM1_with_Protease_Activity
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score 13.188404