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Expanding drug resistance through integron acquisition by IncFI plasmids of Salmonella enterica Typhimurium.

We conducted a 30-year retrospective analysis of IncFI plasmids from Salmonella enterica serotype Typhimurium. These plasmids have been associated with the emergence of epidemic clones of multidrug-resistant Salmonella. Molecular and genetic evidence indicates that IncFI plasmids are evolving through sequential acquisition of integrons carrying different arrays of antibiotic- resistance genes.

Drug Resistance, Microbial↗

A new gene, aadA2b, encoding an aminoglycoside adenylyltransferase, AAD(3")(9), isolated from integron InC in Pseudomonas aeruginosa.

A gene, designated aadA2 and encoding an aminoglycoside-adenylyltransferase, was located on integron InC, isolated from the R-plasmid of Pseudomonas aeruginosa, as a gene cassette. The aadA2 gene of InC was identical to those of pSa and R1033 with the exception of one base in each case. This single-base substitution did not influence the expression of streptomycin resistance. It is proposed that the aadA2 genes isolated from pSa and from R1033, and the aadA2 gene from InC, be designated aadA2a and aadA2b, respectively.

Anti-Bacterial Agents↗

Integron-associated mobile gene cassettes code for folded proteins: the structure of Bal32a, a new member of the adaptable alpha+beta barrel family.

The wide-ranging physiology and large genetic variability observed for prokaryotes is largely attributed, not to the prokaryotic genome itself, but rather to mechanisms of lateral gene transfer. Cassette PCR has been used to sample the integron/gene cassette metagenome from different natural environments without laboratory cultivation of the host organism, and without prior knowledge of any target protein sequence. Since over 90% of cassette genes are unrelated to any sequence in the current databases, it is not clear whether these genes code for folded functional proteins. We have selected a sample of eight cassette-encoded genes with no known homologs; five have been isolated as soluble protein products and shown by biophysical techniques to be folded. In solution, at least three of these proteins organise as stable oligomeric assemblies. The tertiary structure of one of these, Bal32a derived from a contaminated soil site, has been solved by X-ray crystallography to 1.8 A resolution. From the three-dimensional structure, Bal32a is found to be a member of the highly adaptable alpha+beta barrel family of transport proteins and enzymes. In Bal32a, the barrel cavity is unusually deep and inaccessible to solvent. Polar side-chains in its interior are reminiscent of catalytic sites of limonene-1,2-epoxide hydrolase and nogalonic acid methyl ester cyclase. These studies demonstrate the viability of direct sampling of mobile DNA as a route for the discovery of novel proteins.

Amino Acid Sequence↗