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Gene cloning and expression of MAP30 in Pichia pastoris

MAP30, a single-stranded type-I ribosome inactivating protein found in Momordica charantia, shows anti-HIV and anti-tumour activity. It could significantly inhibit the HIV-1 and herpes simplex virus infection. In this study, we tried a safe and convenient expression system supplying MAP30 protein fo...

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Autores principales: Wang, Fang, Chi, Chun-yu, Wang, Li-yuan, Qiao, Yu, Jin, Xiao-xia, Ding, Guo-hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4433928/
https://www.ncbi.nlm.nih.gov/pubmed/26019499
http://dx.doi.org/10.1080/13102818.2014.901667
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author Wang, Fang
Chi, Chun-yu
Wang, Li-yuan
Qiao, Yu
Jin, Xiao-xia
Ding, Guo-hua
author_facet Wang, Fang
Chi, Chun-yu
Wang, Li-yuan
Qiao, Yu
Jin, Xiao-xia
Ding, Guo-hua
author_sort Wang, Fang
collection PubMed
description MAP30, a single-stranded type-I ribosome inactivating protein found in Momordica charantia, shows anti-HIV and anti-tumour activity. It could significantly inhibit the HIV-1 and herpes simplex virus infection. In this study, we tried a safe and convenient expression system supplying MAP30 protein for medical practice. The gene encoding MAP30 was cloned into pMD18-T vector. The pMD18-MAP30 plasmid was transformed into competent Escherichia coli JM109 by a chemical method. The MAP30 gene was obtained from the pMD18-MAP30 plasmid digested with NotI and SnaBI and the MAP30 gene was ligated into pGAPHα. Then, pGAPHα-MAP30 was transformed into Pichia pastoris GS115 by electroporation. GS115 transformants were analysed by sodium dodecyl sulfate polyacrylamide gelelectrophoresis (SDS-PAGE) and Western blot. SDS-PAGE revealed an extra band of approximately 32 kDa in the supernatant protein of the GS115 transformants and in their intracellular protein fraction. The result of Western-blot analysis showed that the supernatant and the cell pellet from GS115 with pGAPHα-MAP30 could specially bind to monoclonal antibodies against His in the 32 kDa site. These results demonstrated that the expression of MAP30 in P. pastoris was successful; the process of the expression did not need methanol induction or introduction of an antibiotic-resistance gene. The study may provide a new way for MAP30 synthesis. Owing to its safety, this new approach is expected to be widely used in the medical field.
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spelling pubmed-44339282015-05-25 Gene cloning and expression of MAP30 in Pichia pastoris Wang, Fang Chi, Chun-yu Wang, Li-yuan Qiao, Yu Jin, Xiao-xia Ding, Guo-hua Biotechnol Biotechnol Equip Articles; Pharmaceutical Biotechnology MAP30, a single-stranded type-I ribosome inactivating protein found in Momordica charantia, shows anti-HIV and anti-tumour activity. It could significantly inhibit the HIV-1 and herpes simplex virus infection. In this study, we tried a safe and convenient expression system supplying MAP30 protein for medical practice. The gene encoding MAP30 was cloned into pMD18-T vector. The pMD18-MAP30 plasmid was transformed into competent Escherichia coli JM109 by a chemical method. The MAP30 gene was obtained from the pMD18-MAP30 plasmid digested with NotI and SnaBI and the MAP30 gene was ligated into pGAPHα. Then, pGAPHα-MAP30 was transformed into Pichia pastoris GS115 by electroporation. GS115 transformants were analysed by sodium dodecyl sulfate polyacrylamide gelelectrophoresis (SDS-PAGE) and Western blot. SDS-PAGE revealed an extra band of approximately 32 kDa in the supernatant protein of the GS115 transformants and in their intracellular protein fraction. The result of Western-blot analysis showed that the supernatant and the cell pellet from GS115 with pGAPHα-MAP30 could specially bind to monoclonal antibodies against His in the 32 kDa site. These results demonstrated that the expression of MAP30 in P. pastoris was successful; the process of the expression did not need methanol induction or introduction of an antibiotic-resistance gene. The study may provide a new way for MAP30 synthesis. Owing to its safety, this new approach is expected to be widely used in the medical field. Taylor & Francis 2014-01-02 2014-06-04 /pmc/articles/PMC4433928/ /pubmed/26019499 http://dx.doi.org/10.1080/13102818.2014.901667 Text en © 2014 The Author(s). Published by Taylor & Francis. This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The moral rights of the named author(s) have been asserted.
spellingShingle Articles; Pharmaceutical Biotechnology
Wang, Fang
Chi, Chun-yu
Wang, Li-yuan
Qiao, Yu
Jin, Xiao-xia
Ding, Guo-hua
Gene cloning and expression of MAP30 in Pichia pastoris
title Gene cloning and expression of MAP30 in Pichia pastoris
title_full Gene cloning and expression of MAP30 in Pichia pastoris
title_fullStr Gene cloning and expression of MAP30 in Pichia pastoris
title_full_unstemmed Gene cloning and expression of MAP30 in Pichia pastoris
title_short Gene cloning and expression of MAP30 in Pichia pastoris
title_sort gene cloning and expression of map30 in pichia pastoris
topic Articles; Pharmaceutical Biotechnology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4433928/
https://www.ncbi.nlm.nih.gov/pubmed/26019499
http://dx.doi.org/10.1080/13102818.2014.901667
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