Molecular dynamics simulation and development of a thermostable endoglucanase I from fusarium oxysporum
Thermostable enzymes have several benefits in various industrial applications. Cellulase has been used in various industries such as textile, detergent, food and feed, pulp and paper, and recently in bioethanol production. The major aim of this work is to predict the potential site for mutagenesis c...
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iium-399542018-06-19T00:48:26Z http://irep.iium.edu.my/39954/ Molecular dynamics simulation and development of a thermostable endoglucanase I from fusarium oxysporum Noorbatcha, Ibrahim Ali Mohd. Salleh, Hamzah Ahmad, Abdul Aziz TP Chemical technology TP248.13 Biotechnology Thermostable enzymes have several benefits in various industrial applications. Cellulase has been used in various industries such as textile, detergent, food and feed, pulp and paper, and recently in bioethanol production. The major aim of this work is to predict the potential site for mutagenesis computationally and produce the mutant experimentally with improved thermal stability properties and characterize the mutant enzyme 2014-09-10 Conference or Workshop Item NonPeerReviewed application/pdf en http://irep.iium.edu.my/39954/1/NPS_2014_10Sept2014.pdf application/pdf en http://irep.iium.edu.my/39954/4/compiled.pdf Noorbatcha, Ibrahim Ali and Mohd. Salleh, Hamzah and Ahmad, Abdul Aziz (2014) Molecular dynamics simulation and development of a thermostable endoglucanase I from fusarium oxysporum. In: National Postgraduate Seminar (NPS 2014), 10th September 2014, Serdang, Selangor. (Unpublished) http://www.mymicro.org/NPS2014.php |
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TP Chemical technology TP248.13 Biotechnology |
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TP Chemical technology TP248.13 Biotechnology Noorbatcha, Ibrahim Ali Mohd. Salleh, Hamzah Ahmad, Abdul Aziz Molecular dynamics simulation and development of a thermostable endoglucanase I from fusarium oxysporum |
description |
Thermostable enzymes have several benefits in various industrial applications. Cellulase has been used in various industries such as textile, detergent, food and feed, pulp and paper, and recently in bioethanol production. The major aim of this work is to predict the potential site for mutagenesis computationally and produce the mutant experimentally with improved thermal stability properties and characterize the mutant enzyme
|
format |
Conference or Workshop Item |
author |
Noorbatcha, Ibrahim Ali Mohd. Salleh, Hamzah Ahmad, Abdul Aziz |
author_facet |
Noorbatcha, Ibrahim Ali Mohd. Salleh, Hamzah Ahmad, Abdul Aziz |
author_sort |
Noorbatcha, Ibrahim Ali |
title |
Molecular dynamics simulation and development of a thermostable endoglucanase I from fusarium oxysporum |
title_short |
Molecular dynamics simulation and development of a thermostable endoglucanase I from fusarium oxysporum |
title_full |
Molecular dynamics simulation and development of a thermostable endoglucanase I from fusarium oxysporum |
title_fullStr |
Molecular dynamics simulation and development of a thermostable endoglucanase I from fusarium oxysporum |
title_full_unstemmed |
Molecular dynamics simulation and development of a thermostable endoglucanase I from fusarium oxysporum |
title_sort |
molecular dynamics simulation and development of a thermostable endoglucanase i from fusarium oxysporum |
publishDate |
2014 |
url |
http://irep.iium.edu.my/39954/ http://irep.iium.edu.my/39954/ http://irep.iium.edu.my/39954/1/NPS_2014_10Sept2014.pdf http://irep.iium.edu.my/39954/4/compiled.pdf |
first_indexed |
2023-09-18T20:57:21Z |
last_indexed |
2023-09-18T20:57:21Z |
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1777410393276153856 |