Novel Template Plasmids pCyaA’-Kan and pCyaA’-Cam for Generation of Unmarked Chromosomal cyaA’ Translational Fusion to T3SS Effectors in Salmonella
Abstract
The type III secretion systems (T3SS) encoded in pathogenicity islands SPI-1 and SPI-2 are key virulence factors of Salmonella. These systems translocate proteins known as effectors into eukaryotic cells during infection. To characterize the functionality of T3SS effectors, gene fusions to the CyaAâ reporter of Bordetella pertussis are often used. CyaAâ is a calmodulin-dependent adenylate cyclase that is only active within eukaryotic cells. Thus, the translocation of an effector fused to CyaAâ can be evaluated by measuring cAMP levels in infected cells. Here, we report the construction of plasmids pCyaAâ-Kan and pCyaAâ-Cam, which contain the ORF encoding CyaAâ adjacent to a cassette that confers resistance to kanamycin or chloramphenicol, respectively, flanked by Flp recombinase target (FRT) sites. A PCR product from pCyaAâ-Kan or pCyaAâ-Cam containing these genetic elements can be introduced into the bacterial chromosome to generate gene fusions by homologous recombination using the Red recombination system from bacteriophage λ. Subsequently, the resistance cassette can be removed by recombination between the FRT sites using the Flp recombinase. As a proof of concept, the plasmids pCyaAâ-Kan and pCyaAâ-Cam were used to generate unmarked chromosomal fusions of 10 T3SS effectors to CyaAâ in S. Typhimurium. Each fusion protein was detected by Western blot using an anti-CyaAâ monoclonal antibody when the corresponding mutant strain was grown under conditions that induce the expression of the native gene. In addition, T3SS-1-dependent secretion of fusion protein SipA-CyaAâ during in vitro growth was verified by Western blot analysis of culture su-pernatants. Finally, efficient translocation of SipA-CyaAâ into HeLa cells was evidenced by increased intracellular cAMP levels at different times of infection. Therefore, the plasmids pCyaAâ-Kan and pCyaAâ-Cam can be used to generate unmarked chromosomal cyaAâ translational fusion to study regulated expression, secretion and translocation of Salmonella T3SS effectors into eukaryotic cells.
Más información
| Título según SCOPUS: | Novel template plasmids pcyaaâ-kan and pcyaaâ-cam for generation of unmarked chromosomal cyaaâ translational fusion to t3ss effectors in salmonella |
| Título de la Revista: | Microorganisms |
| Volumen: | 9 |
| Número: | 3 |
| Editorial: | Multidisciplinary Digital Publishing Institute (MDPI) |
| Fecha de publicación: | 2021 |
| Página final: | 11 |
| Idioma: | English |
| DOI: |
10.3390/microorganisms9030475 |
| Notas: | SCOPUS |