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Infection and Immunity, October 1999, p. 5133-5141, Vol. 67, No. 10
Department of Microbiology and
Immunology1 and Co-Operative Research
Centre for Vaccine Technology,2 The University
of Melbourne, Parkville, Victoria 3052, Australia
Received 3 May 1999/Returned for modification 18 June 1999/Accepted 27 July 1999
This study describes the construction and analysis of three in
vivo-inducible promoter expression plasmids, containing
pnirB, ppagC, and pkatG, for the
delivery of foreign antigens in the
0019-9567/99/$04.00+0
Copyright © 1999, American Society for Microbiology. All rights reserved.
Use of In Vivo-Regulated Promoters To Deliver
Antigens from Attenuated Salmonella enterica var.
Typhimurium
and
aroAD mutant of
Salmonella enterica var. Typhimurium (hereafter referred to
as S. typhimurium). The reporter genes encoding
-galactosidase and firefly luciferase were used to assess the
comparative levels of promoter activity in S. typhimurium
in vitro in response to different induction stimuli and in vivo in
immunized mice. It was determined that the ppagC construct
directed the expression of more
-galactosidase and luciferase in
S. typhimurium than the pnirB and
pkatG constructs, both in vitro and in vivo. The gene
encoding the C fragment of tetanus toxin was expressed in the
aroAD mutant of S. typhimurium (BRD509) under
the control of the three promoters. Mice orally immunized with
attenuated S. typhimurium expressing C fragment under
control of the pagC promoter
[BRD509(pKK/ppagC/C frag)] mounted the highest tetanus toxoid-specific serum antibody response. Levels of luciferase expression in vivo and C-fragment expression in vitro from the pagC promoter appeared to be equivalent to if not lower
than the levels of expression detected with the constitutive
trc promoter. However, mice immunized with
BRD509(pKK/ppagC/C frag) induced significantly higher
levels of tetanus toxoid-specific antibody than BRD509(pKK/C
frag)-immunized mice, suggesting that the specific location of foreign
antigen expression may be important for immunogenicity. Mutagenesis of
the ribosome binding sites (RBS) in the three promoter/C fragment
expression plasmids was also performed. Despite optimization of the RBS
in the three different promoter elements, the expression levels in vivo
and overall immunogenicity of C fragment when delivered to mice by
attenuated S. typhimurium were not affected. These studies
suggest that in vivo-inducible promoters may give rise to enhanced
immunogenicity and increase the efficacy of S. typhimurium as a vaccine vector.
*
Corresponding author. Present address: Department of
Biochemistry, Imperial College of Science, Technology and Medicine,
Exhibition Road, London SW7 2AZ, United Kingdom. Phone: 44 171 5945254. Fax: 44 171 5945255. E-mail: s.j.dunstan{at}ic.ac.uk.
Present address: Department of Biochemistry, Imperial College of
Science, Technology and Medicine, London SW7 2AZ, United Kingdom.
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