Enhanced large-scale production of recombinant phytase in E. coli DH5 α: Medium components optimization and thermodynamic studies

Medium components and their solubility for improvement of recombinant phytase production in Escherichia coli DH5α. was optimized and reported in this study. Solubility study was supported by the computational works conducted using COSMO-RS, a quick tool to predict the thermophysical and chemical pr...

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Main Authors: Nuge, T., Hayyan, A., Elgharbawy, A.A.M., Salleh, H.M., Jun Yong, Y., Kamarudin, A.F., Hizaddin, H.F., Zuhanis Has-Yun Hashim, Y., Liu, X., Saleh, J., Ibrahim Daoud, J., Aljohani, A.S.M., Alhumaydhi, F.A., Zulkifli, M.Y., Roslan Mohd Nor, M., Al Abdulmonem, W.
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Published: 2023
Online Access:http://scholars.utp.edu.my/id/eprint/34317/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85144440944&doi=10.1016%2fj.molliq.2022.120965&partnerID=40&md5=8bc8afa97a88789e9ebce1b57ffcd3db
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spelling oai:scholars.utp.edu.my:343172023-01-31T03:54:32Z http://scholars.utp.edu.my/id/eprint/34317/ Enhanced large-scale production of recombinant phytase in E. coli DH5 α: Medium components optimization and thermodynamic studies Nuge, T. Hayyan, A. Elgharbawy, A.A.M. Salleh, H.M. Jun Yong, Y. Kamarudin, A.F. Hizaddin, H.F. Zuhanis Has-Yun Hashim, Y. Liu, X. Saleh, J. Ibrahim Daoud, J. Aljohani, A.S.M. Alhumaydhi, F.A. Zulkifli, M.Y. Roslan Mohd Nor, M. Al Abdulmonem, W. Medium components and their solubility for improvement of recombinant phytase production in Escherichia coli DH5α. was optimized and reported in this study. Solubility study was supported by the computational works conducted using COSMO-RS, a quick tool to predict the thermophysical and chemical properties of fluid mixture. Solubility concept through thermodynamic calculation was introduced to study the interaction between medium components with water and selected medium components with each other. Based on the �-profile and �-potential, together with Gibbs free energy, a less soluble medium component showed a negative effect on phytase production due to the formation of insoluble metal-ion phytate complexes. Highest phytase production was obtained under optimum conditions of as 30 g/L yeast extracts, 1 g/L (NH4)2HPO4, 3 g/L MgSO4·7H2O, 0.3 g/L FeSO4·7H2O and 0.1 (v/v) glycerol. Both experimental and computational works were conducted to investigate the interaction between medium components. The melting point and phase appearance of the mixture were studied. From experimental results, the mixtures were seemed to be unstable due to its higher melting point compared to individual medium components. The analysis from Gibbs free energy reflected the total immiscibility between medium components. It was concluded that medium components worked individually to promote the phytase production. Yeast extract, MgSO4·7H2O and FeSO4·7H2O were selected for optimization by central composite design, whereas other factors were maintained at their optimal level. Statistical analysis showed that the optimum media containing 34.06 g/L yeast extract, 3.6 g/L MgSO4·7H2O and 0.32 g/L FeSO4·7H2O gave the maximum phytase production of 118.91 U/mL. The optimization of process condition such as temperature, agitation speed and seed age were further investigated by employing Full Factorial Experimental (FUFE) Design after fixing the media composition. The maximum phytase production of 200 U/mL was obtained at optimum condition (temperature 37 °C, agitation speed 500 rpm and seed age 1.55 at OD600nm). The phytase production in a larger scale was conducted by submerged fermentation in 2 L and 30 L bioreactor. In large scale production, constant tip speed suited the best for scale-up strategy comparing to the constant power number. The optimum process condition improved the phytase production and plasmid stability. © 2022 Elsevier B.V. 2023 Article NonPeerReviewed Nuge, T. and Hayyan, A. and Elgharbawy, A.A.M. and Salleh, H.M. and Jun Yong, Y. and Kamarudin, A.F. and Hizaddin, H.F. and Zuhanis Has-Yun Hashim, Y. and Liu, X. and Saleh, J. and Ibrahim Daoud, J. and Aljohani, A.S.M. and Alhumaydhi, F.A. and Zulkifli, M.Y. and Roslan Mohd Nor, M. and Al Abdulmonem, W. (2023) Enhanced large-scale production of recombinant phytase in E. coli DH5 α: Medium components optimization and thermodynamic studies. Journal of Molecular Liquids, 370. https://www.scopus.com/inward/record.uri?eid=2-s2.0-85144440944&doi=10.1016%2fj.molliq.2022.120965&partnerID=40&md5=8bc8afa97a88789e9ebce1b57ffcd3db 10.1016/j.molliq.2022.120965 10.1016/j.molliq.2022.120965 10.1016/j.molliq.2022.120965
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Medium components and their solubility for improvement of recombinant phytase production in Escherichia coli DH5α. was optimized and reported in this study. Solubility study was supported by the computational works conducted using COSMO-RS, a quick tool to predict the thermophysical and chemical properties of fluid mixture. Solubility concept through thermodynamic calculation was introduced to study the interaction between medium components with water and selected medium components with each other. Based on the �-profile and �-potential, together with Gibbs free energy, a less soluble medium component showed a negative effect on phytase production due to the formation of insoluble metal-ion phytate complexes. Highest phytase production was obtained under optimum conditions of as 30 g/L yeast extracts, 1 g/L (NH4)2HPO4, 3 g/L MgSO4·7H2O, 0.3 g/L FeSO4·7H2O and 0.1 (v/v) glycerol. Both experimental and computational works were conducted to investigate the interaction between medium components. The melting point and phase appearance of the mixture were studied. From experimental results, the mixtures were seemed to be unstable due to its higher melting point compared to individual medium components. The analysis from Gibbs free energy reflected the total immiscibility between medium components. It was concluded that medium components worked individually to promote the phytase production. Yeast extract, MgSO4·7H2O and FeSO4·7H2O were selected for optimization by central composite design, whereas other factors were maintained at their optimal level. Statistical analysis showed that the optimum media containing 34.06 g/L yeast extract, 3.6 g/L MgSO4·7H2O and 0.32 g/L FeSO4·7H2O gave the maximum phytase production of 118.91 U/mL. The optimization of process condition such as temperature, agitation speed and seed age were further investigated by employing Full Factorial Experimental (FUFE) Design after fixing the media composition. The maximum phytase production of 200 U/mL was obtained at optimum condition (temperature 37 °C, agitation speed 500 rpm and seed age 1.55 at OD600nm). The phytase production in a larger scale was conducted by submerged fermentation in 2 L and 30 L bioreactor. In large scale production, constant tip speed suited the best for scale-up strategy comparing to the constant power number. The optimum process condition improved the phytase production and plasmid stability. © 2022 Elsevier B.V.
format Article
author Nuge, T.
Hayyan, A.
Elgharbawy, A.A.M.
Salleh, H.M.
Jun Yong, Y.
Kamarudin, A.F.
Hizaddin, H.F.
Zuhanis Has-Yun Hashim, Y.
Liu, X.
Saleh, J.
Ibrahim Daoud, J.
Aljohani, A.S.M.
Alhumaydhi, F.A.
Zulkifli, M.Y.
Roslan Mohd Nor, M.
Al Abdulmonem, W.
spellingShingle Nuge, T.
Hayyan, A.
Elgharbawy, A.A.M.
Salleh, H.M.
Jun Yong, Y.
Kamarudin, A.F.
Hizaddin, H.F.
Zuhanis Has-Yun Hashim, Y.
Liu, X.
Saleh, J.
Ibrahim Daoud, J.
Aljohani, A.S.M.
Alhumaydhi, F.A.
Zulkifli, M.Y.
Roslan Mohd Nor, M.
Al Abdulmonem, W.
Enhanced large-scale production of recombinant phytase in E. coli DH5 α: Medium components optimization and thermodynamic studies
author_facet Nuge, T.
Hayyan, A.
Elgharbawy, A.A.M.
Salleh, H.M.
Jun Yong, Y.
Kamarudin, A.F.
Hizaddin, H.F.
Zuhanis Has-Yun Hashim, Y.
Liu, X.
Saleh, J.
Ibrahim Daoud, J.
Aljohani, A.S.M.
Alhumaydhi, F.A.
Zulkifli, M.Y.
Roslan Mohd Nor, M.
Al Abdulmonem, W.
author_sort Nuge, T.
title Enhanced large-scale production of recombinant phytase in E. coli DH5 α: Medium components optimization and thermodynamic studies
title_short Enhanced large-scale production of recombinant phytase in E. coli DH5 α: Medium components optimization and thermodynamic studies
title_full Enhanced large-scale production of recombinant phytase in E. coli DH5 α: Medium components optimization and thermodynamic studies
title_fullStr Enhanced large-scale production of recombinant phytase in E. coli DH5 α: Medium components optimization and thermodynamic studies
title_full_unstemmed Enhanced large-scale production of recombinant phytase in E. coli DH5 α: Medium components optimization and thermodynamic studies
title_sort enhanced large-scale production of recombinant phytase in e. coli dh5 î±: medium components optimization and thermodynamic studies
publishDate 2023
url http://scholars.utp.edu.my/id/eprint/34317/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85144440944&doi=10.1016%2fj.molliq.2022.120965&partnerID=40&md5=8bc8afa97a88789e9ebce1b57ffcd3db
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