| Literature DB >> 29018421 |
Abstract
Aggregatibacter actinomycetemcomitans is the primary etiological agent of aggressive periodontal disease. Identification of novel virulence factors at the genome-wide level is hindered by lack of efficient genetic tools to perform mutagenesis in this organism. The Himar1 mariner transposon is known to yield a random distribution of insertions in an organism's genome with requirement for only a TA dinucleotide target and is independent of host-specific factors. However, the utility of this system in A. actinomycetemcomitans is unknown. In this study, we found that Himar1 transposon mutagenesis occurs at a high frequency (×10-4), and can be universally applied to wild-type A. actinomycetemcomitans strains of serotypes a, b, and c. The Himar1 transposon inserts were stably inherited in A. actinomycetemcomitans transconjugants in the absence of antibiotics. A library of 16,000 mutant colonies of A. actinomycetemcomitans was screened for reduced biofilm formation. Mutants with transposon inserts in genes encoding pilus, putative ion transporters, multidrug resistant proteins, transcription regulators and enzymes involved in the synthesis of extracellular polymeric substance, bacterial metabolism and stress response were discovered in this screen. Our results demonstrated the utility of the Himar1 mutagenesis system as a novel genetic tool for functional genomic analysis in A. actinomycetemcomitans.Entities:
Keywords: DNA transposable elements; adherence; biofilm; conjugation; mutagenesis; periodontal disease
Year: 2017 PMID: 29018421 PMCID: PMC5622930 DOI: 10.3389/fmicb.2017.01842
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Transposon insertion sites in Aggregatibacter actinomycetemcomitans ATCC 700685 mutants with reduction in biomass.
| Functional groups | Mutant No. | Gene locus∗ | Putative function | Reduction in biomass | Previously described |
|---|---|---|---|---|---|
| Membrane proteins | 33-22 | CF65_00062 | multidrug resistance protein | 43.9% | No |
| 41-40 | CF65_02975 | integral membrane protein | 51.5% | No | |
| 43-31 | CF65_02334 | outer membrane protein P1 precursor | 45.5% | No | |
| 47-57 | CF65_01344 | magnesium transporter CorA | 53.0% | No | |
| 49-82 | CF65_01341 | multidrug efflux protein | 56.8% | No | |
| 59-2 | CF65_02805 | peptidase C39 | 56.8% | No | |
| 53-76 | CF65_02294 | Na+/H+ anti-porter NhaC | 45.5% | No | |
| 113-2 | CF65_02532 | TonB-dependent receptor | 49.4% | No | |
| Gene regulation | 51-10 | CF65_01698 | transcriptional regulator | 67.5% | No |
| 53-12 | CF65_01579 | transcriptional regulator, TyrR | 59.2% | No | |
| 113-6 | CF65_01794 | transcriptional regulator, LysR family | 51.0% | No | |
| Metabolism | 33-32 | CF65_02251 | biotin sulfoxide reductase | 48.2% | No |
| 44-72 | CF65_02933 | sulfur acceptor protein CsdL | 51.0% | No | |
| 46-91 | CF65_02631 | UDP-phosphate galactose phosphotransferase | 45.7% | No | |
| 48-83 | CF65_01934 | histidine phosphatase | 54.7% | No | |
| 59-1 | CF65_02382 | glucuronate isomerase | 53.9% | No | |
| 64-5 | CF65_02983 | pyruvate formate-lyase | 52.9% | No | |
| 113-7 | CF65_03351 | tRNA-Lys | 48.3% | No | |
| 113-8 | CF65_02683 | electron transporter | 43.3% | No | |
| 116-78 | CF65_03076 | 23S ribosomal RNA | 53.2% | No | |
| 120-15 | CF65_00557 | ATPase | 48.1% | No | |
| Other functions | 123-98 | CF65_00867 | Flp-1 | 55.1% | Yes |
| 34-14 | CF65_02545 | hypothetical protein | 54.2% | No | |
| 44-43 | CF65_00379 | hypothetical protein | 54.3% | No | |
| 110-1 | CF65_01357 | hypothetical protein | 54.5% | No | |