Construction of Bordetella pertussis strains with enhanced production of genetically-inactivated Pertussis Toxin and Pertactin by unmarked allelic exchange

Background: Acellular Pertussis vaccines against whooping cough caused by Bordetella pertussis present a much-improved safety profile compared to the original vaccine of killed whole cells. The principal antigen of acellular Pertussis vaccine, Pertussis Toxin (PT), must be chemically inactivated to...

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Main Authors: Wasin Buasri, Attawut Impoolsup, Chuenchit Boonchird, Anocha Luengchaichawange, Pannipa Prompiboon, Jean Petre, Watanalai Panbangred
Other Authors: Mahidol University
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Published: 2018
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/14332
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spelling th-mahidol.143322018-06-11T12:12:21Z Construction of Bordetella pertussis strains with enhanced production of genetically-inactivated Pertussis Toxin and Pertactin by unmarked allelic exchange Wasin Buasri Attawut Impoolsup Chuenchit Boonchird Anocha Luengchaichawange Pannipa Prompiboon Jean Petre Watanalai Panbangred Mahidol University Bionet-Asia Co. Ltd. Immunology and Microbiology Medicine Background: Acellular Pertussis vaccines against whooping cough caused by Bordetella pertussis present a much-improved safety profile compared to the original vaccine of killed whole cells. The principal antigen of acellular Pertussis vaccine, Pertussis Toxin (PT), must be chemically inactivated to obtain the corresponding toxoid (PTd). This process, however, results in extensive denaturation of the antigen. The development of acellular Pertussis vaccines containing PTd or recombinant PT (rPT) with inactivated S1, Filamentous Hemagglutinin (FHA), and Pertactin (PRN) has shown that the yield of PRN was limiting, whereas FHA was overproduced. To improve antigen yields and process economics, we have constructed strains of Bordetella pertussis that produce enhanced levels of both rPT and PRN. Results: Three recombinant strains of Bordetella pertussis were obtained by homologous recombination using an allelic exchange vector, pSS4245. In the first construct, the segment encoding PT subunit S1 was replaced by two mutations (R9K and E129G) that removed PT toxicity and Bp-WWC strain was obtained. In the second construct, a second copy of the whole cluster of PT structural genes containing the above mutations was inserted elsewhere into the chromosome of Bp-WWC and the Bp-WWD strain was obtained. This strain generated increased amounts of rPT (3.77 0.53 g/mL) compared to Bp-WWC (2.61 0.16 g/mL) and wild type strain (2.2 g/mL). In the third construct, a second copy of the prn gene was inserted into the chromosome of Bp-WWD to obtain Bp-WWE. Strain Bp-WWE produced PRN at 4.18 1.02 g/mL in the cell extract which was about two-fold higher than Bp-WWC (2.48 0.10 g/mL) and Bp-WWD (2.31 0.17 g/mL). Purified PTd from Bp-WWD at 0.8-1.6 g/well did not show any toxicity against Chinese hamster ovary (CHO) cell whereas purified PT from WT demonstrated a cell clustering endpoint at 2.6 pg/well. Conclusions: We have constructed Bordetella pertussis strains expressing increased amounts of the antigens, rPT or rPT and PRN. Expression of the third antigen, FHA was unchanged (always in excess). These strains will be useful for the manufacture of affordable acellular Pertussis vaccines. © 2012 Buasri et al; licensee BioMed Central Ltd. 2018-06-11T04:54:01Z 2018-06-11T04:54:01Z 2012-04-24 Article BMC Microbiology. Vol.12, (2012) 10.1186/1471-2180-12-61 14712180 2-s2.0-84859928974 https://repository.li.mahidol.ac.th/handle/123456789/14332 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84859928974&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Immunology and Microbiology
Medicine
spellingShingle Immunology and Microbiology
Medicine
Wasin Buasri
Attawut Impoolsup
Chuenchit Boonchird
Anocha Luengchaichawange
Pannipa Prompiboon
Jean Petre
Watanalai Panbangred
Construction of Bordetella pertussis strains with enhanced production of genetically-inactivated Pertussis Toxin and Pertactin by unmarked allelic exchange
description Background: Acellular Pertussis vaccines against whooping cough caused by Bordetella pertussis present a much-improved safety profile compared to the original vaccine of killed whole cells. The principal antigen of acellular Pertussis vaccine, Pertussis Toxin (PT), must be chemically inactivated to obtain the corresponding toxoid (PTd). This process, however, results in extensive denaturation of the antigen. The development of acellular Pertussis vaccines containing PTd or recombinant PT (rPT) with inactivated S1, Filamentous Hemagglutinin (FHA), and Pertactin (PRN) has shown that the yield of PRN was limiting, whereas FHA was overproduced. To improve antigen yields and process economics, we have constructed strains of Bordetella pertussis that produce enhanced levels of both rPT and PRN. Results: Three recombinant strains of Bordetella pertussis were obtained by homologous recombination using an allelic exchange vector, pSS4245. In the first construct, the segment encoding PT subunit S1 was replaced by two mutations (R9K and E129G) that removed PT toxicity and Bp-WWC strain was obtained. In the second construct, a second copy of the whole cluster of PT structural genes containing the above mutations was inserted elsewhere into the chromosome of Bp-WWC and the Bp-WWD strain was obtained. This strain generated increased amounts of rPT (3.77 0.53 g/mL) compared to Bp-WWC (2.61 0.16 g/mL) and wild type strain (2.2 g/mL). In the third construct, a second copy of the prn gene was inserted into the chromosome of Bp-WWD to obtain Bp-WWE. Strain Bp-WWE produced PRN at 4.18 1.02 g/mL in the cell extract which was about two-fold higher than Bp-WWC (2.48 0.10 g/mL) and Bp-WWD (2.31 0.17 g/mL). Purified PTd from Bp-WWD at 0.8-1.6 g/well did not show any toxicity against Chinese hamster ovary (CHO) cell whereas purified PT from WT demonstrated a cell clustering endpoint at 2.6 pg/well. Conclusions: We have constructed Bordetella pertussis strains expressing increased amounts of the antigens, rPT or rPT and PRN. Expression of the third antigen, FHA was unchanged (always in excess). These strains will be useful for the manufacture of affordable acellular Pertussis vaccines. © 2012 Buasri et al; licensee BioMed Central Ltd.
author2 Mahidol University
author_facet Mahidol University
Wasin Buasri
Attawut Impoolsup
Chuenchit Boonchird
Anocha Luengchaichawange
Pannipa Prompiboon
Jean Petre
Watanalai Panbangred
format Article
author Wasin Buasri
Attawut Impoolsup
Chuenchit Boonchird
Anocha Luengchaichawange
Pannipa Prompiboon
Jean Petre
Watanalai Panbangred
author_sort Wasin Buasri
title Construction of Bordetella pertussis strains with enhanced production of genetically-inactivated Pertussis Toxin and Pertactin by unmarked allelic exchange
title_short Construction of Bordetella pertussis strains with enhanced production of genetically-inactivated Pertussis Toxin and Pertactin by unmarked allelic exchange
title_full Construction of Bordetella pertussis strains with enhanced production of genetically-inactivated Pertussis Toxin and Pertactin by unmarked allelic exchange
title_fullStr Construction of Bordetella pertussis strains with enhanced production of genetically-inactivated Pertussis Toxin and Pertactin by unmarked allelic exchange
title_full_unstemmed Construction of Bordetella pertussis strains with enhanced production of genetically-inactivated Pertussis Toxin and Pertactin by unmarked allelic exchange
title_sort construction of bordetella pertussis strains with enhanced production of genetically-inactivated pertussis toxin and pertactin by unmarked allelic exchange
publishDate 2018
url https://repository.li.mahidol.ac.th/handle/123456789/14332
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