» Articles » PMID: 25986219

Characterization of Francisella Tularensis Schu S4 Defined Mutants As Live-attenuated Vaccine Candidates

Overview
Journal Pathog Dis
Date 2015 May 20
PMID 25986219
Citations 14
Authors
Affiliations
Soon will be listed here.
Abstract

Francisella tularensis (Ft), the etiological agent of tularemia and a Tier 1 select agent, has been previously weaponized and remains a high priority for vaccine development. Ft tularensis (type A) and Ft holarctica (type B) cause most human disease. We selected six attenuating genes from the live vaccine strain (LVS; type B), F. novicida and other intracellular bacteria: FTT0507, FTT0584, FTT0742, FTT1019c (guaA), FTT1043 (mip) and FTT1317c (guaB) and created unmarked deletion mutants of each in the highly human virulent Ft strain Schu S4 (Type A) background. FTT0507, FTT0584, FTT0742 and FTT1043 Schu S4 mutants were not attenuated for virulence in vitro or in vivo. In contrast, Schu S4 gua mutants were unable to replicate in murine macrophages and were attenuated in vivo, with an i.n. LD50 > 10(5) CFU in C57BL/6 mice. However, the gua mutants failed to protect mice against lethal challenge with WT Schu S4, despite demonstrating partial protection in rabbits in a previous study. These results contrast with the highly protective capacity of LVS gua mutants against a lethal LVS challenge in mice, and underscore differences between these strains and the animal models in which they are evaluated, and therefore have important implications for vaccine development.

Citing Articles

Unveiling the versatility of the thioredoxin framework: Insights from the structural examination of DsbA1.

Penning S, Hong Y, Cunliffe T, Hor L, Totsika M, Paxman J Comput Struct Biotechnol J. 2024; 23:4324-4336.

PMID: 39697679 PMC: 11653150. DOI: 10.1016/j.csbj.2024.11.034.


Differential effects of inosine monophosphate dehydrogenase (IMPDH/GuaB) inhibition in and .

Peng Y, Moffat J, DuPai C, Kofoed E, Skippington E, Modrusan Z J Bacteriol. 2024; 206(10):e0010224.

PMID: 39235234 PMC: 11500612. DOI: 10.1128/jb.00102-24.


Macrophage infectivity potentiator protein, a peptidyl prolyl cis-trans isomerase, essential for Coxiella burnetii growth and pathogenesis.

Debowski A, Bzdyl N, Thomas D, Scott N, Jenkins C, Iwasaki J PLoS Pathog. 2023; 19(7):e1011491.

PMID: 37399210 PMC: 10348545. DOI: 10.1371/journal.ppat.1011491.


The Enzymatic Activity of Inosine 5'-Monophosphate Dehydrogenase May Not Be a Vulnerable Target for Infections.

Modi G, Marqus G, Vippila M, Gollapalli D, Kim Y, Manna A ACS Infect Dis. 2021; 7(11):3062-3076.

PMID: 34590817 PMC: 9575405. DOI: 10.1021/acsinfecdis.1c00342.


Deletion Mutants of Phagosomal Transporters FptA and FptF Are Highly Attenuated for Virulence and Are Protective Against Lethal Intranasal LVS Challenge in a Murine Model of Respiratory Tularemia.

Hobbs B, Matson C, Theofilou V, Webb T, Younis R, Barry E Pathogens. 2021; 10(7).

PMID: 34202420 PMC: 8308642. DOI: 10.3390/pathogens10070799.


References
1.
Inaba K . Protein disulfide bond generation in Escherichia coli DsbB-DsbA. J Synchrotron Radiat. 2008; 15(Pt 3):199-201. PMC: 2394806. DOI: 10.1107/S090904950706061X. View

2.
Qin A, Scott D, Mann B . Francisella tularensis subsp. tularensis Schu S4 disulfide bond formation protein B, but not an RND-type efflux pump, is required for virulence. Infect Immun. 2008; 76(7):3086-92. PMC: 2446700. DOI: 10.1128/IAI.00363-08. View

3.
Pechous R, McCarthy T, Mohapatra N, Soni S, Penoske R, Salzman N . A Francisella tularensis Schu S4 purine auxotroph is highly attenuated in mice but offers limited protection against homologous intranasal challenge. PLoS One. 2008; 3(6):e2487. PMC: 2429968. DOI: 10.1371/journal.pone.0002487. View

4.
Ito K, Inaba K . The disulfide bond formation (Dsb) system. Curr Opin Struct Biol. 2008; 18(4):450-8. DOI: 10.1016/j.sbi.2008.02.002. View

5.
Qin A, Scott D, Thompson J, Mann B . Identification of an essential Francisella tularensis subsp. tularensis virulence factor. Infect Immun. 2008; 77(1):152-61. PMC: 2612291. DOI: 10.1128/IAI.01113-08. View