Enhanced production of functional extracellular single chain variable fragment against HIV-1 matrix protein from escherichia coli by sequential simplex optimization

The optimal culture condition for extracellular recombinant single chain variable fragment anti HIV-1 p17 protein (scFv anti-p17) production in Escherichia coli HB2151 was investigated by the sequential simplex optimization (SS) method. Five variable parameters were submitted in the fermentation pro...

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Main Authors: Intachai K., Singboottra P., Leksawasdi N., Kasinrerk W., Tayapiwatana C., Butr-Indr B.
Format: Article
Language:English
Published: Taylor and Francis Inc. 2014
Online Access:http://www.scopus.com/inward/record.url?eid=2-s2.0-84906070208&partnerID=40&md5=4230ee3fd1ea8d418965500688d0fb1f
http://cmuir.cmu.ac.th/handle/6653943832/37558
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Institution: Chiang Mai University
Language: English
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spelling th-cmuir.6653943832-375582014-12-09T05:41:44Z Enhanced production of functional extracellular single chain variable fragment against HIV-1 matrix protein from escherichia coli by sequential simplex optimization Intachai K. Singboottra P. Leksawasdi N. Kasinrerk W. Tayapiwatana C. Butr-Indr B. The optimal culture condition for extracellular recombinant single chain variable fragment anti HIV-1 p17 protein (scFv anti-p17) production in Escherichia coli HB2151 was investigated by the sequential simplex optimization (SS) method. Five variable parameters were submitted in the fermentation process. The most favorable condition obtained from 19 independent experiments was as followed: 58 M of IPTG induction to 1.7 OD600 nm at 25.5°C for 16 h with 202 rpm agitation rate. The amount of secreted scFv anti-p17 at the optimal condition was 38% higher than under the control condition. The binding activity of soluble extracellular scFv anti-p17 protein increased 95.5% and 73.2% in comparison with the control condition and non-optimized condition respectively. The soluble scFv anti-p17 from crude HB2151 lysated was subsequently purified by immobilized metal ion affinity chromatography (IMAC) with His-tag. The purified scFv anti-p17 was intact and retained its antigen-binding affinity against HIV-1 p17. We demonstrated that the sequential simplex optimization method was a key for exertion of high yield with fewer experimental requirements for acquiring of large scale secretory protein production. © 2015 Taylor and Francis Group, LLC. 2014-12-09T05:41:44Z 2014-12-09T05:41:44Z 2015 Article 10826068 10.1080/10826068.2014.887580 PBBIF http://www.scopus.com/inward/record.url?eid=2-s2.0-84906070208&partnerID=40&md5=4230ee3fd1ea8d418965500688d0fb1f http://cmuir.cmu.ac.th/handle/6653943832/37558 English Taylor and Francis Inc.
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
language English
description The optimal culture condition for extracellular recombinant single chain variable fragment anti HIV-1 p17 protein (scFv anti-p17) production in Escherichia coli HB2151 was investigated by the sequential simplex optimization (SS) method. Five variable parameters were submitted in the fermentation process. The most favorable condition obtained from 19 independent experiments was as followed: 58 M of IPTG induction to 1.7 OD600 nm at 25.5°C for 16 h with 202 rpm agitation rate. The amount of secreted scFv anti-p17 at the optimal condition was 38% higher than under the control condition. The binding activity of soluble extracellular scFv anti-p17 protein increased 95.5% and 73.2% in comparison with the control condition and non-optimized condition respectively. The soluble scFv anti-p17 from crude HB2151 lysated was subsequently purified by immobilized metal ion affinity chromatography (IMAC) with His-tag. The purified scFv anti-p17 was intact and retained its antigen-binding affinity against HIV-1 p17. We demonstrated that the sequential simplex optimization method was a key for exertion of high yield with fewer experimental requirements for acquiring of large scale secretory protein production. © 2015 Taylor and Francis Group, LLC.
format Article
author Intachai K.
Singboottra P.
Leksawasdi N.
Kasinrerk W.
Tayapiwatana C.
Butr-Indr B.
spellingShingle Intachai K.
Singboottra P.
Leksawasdi N.
Kasinrerk W.
Tayapiwatana C.
Butr-Indr B.
Enhanced production of functional extracellular single chain variable fragment against HIV-1 matrix protein from escherichia coli by sequential simplex optimization
author_facet Intachai K.
Singboottra P.
Leksawasdi N.
Kasinrerk W.
Tayapiwatana C.
Butr-Indr B.
author_sort Intachai K.
title Enhanced production of functional extracellular single chain variable fragment against HIV-1 matrix protein from escherichia coli by sequential simplex optimization
title_short Enhanced production of functional extracellular single chain variable fragment against HIV-1 matrix protein from escherichia coli by sequential simplex optimization
title_full Enhanced production of functional extracellular single chain variable fragment against HIV-1 matrix protein from escherichia coli by sequential simplex optimization
title_fullStr Enhanced production of functional extracellular single chain variable fragment against HIV-1 matrix protein from escherichia coli by sequential simplex optimization
title_full_unstemmed Enhanced production of functional extracellular single chain variable fragment against HIV-1 matrix protein from escherichia coli by sequential simplex optimization
title_sort enhanced production of functional extracellular single chain variable fragment against hiv-1 matrix protein from escherichia coli by sequential simplex optimization
publisher Taylor and Francis Inc.
publishDate 2014
url http://www.scopus.com/inward/record.url?eid=2-s2.0-84906070208&partnerID=40&md5=4230ee3fd1ea8d418965500688d0fb1f
http://cmuir.cmu.ac.th/handle/6653943832/37558
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