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Characterization of pKP1433, a novel KPC-2-encoding plasmid from Klebsiella pneumoniae sequence type 340
C C Papagiannitsis1, V Miriagou, P Giakkoupi
1Department of Microbiology, National School of Public Health, Athens, Greece. c.papagiannitsis@gmail.com
Abstract:
The nucleotide sequence of pKP1433 (55,417 bp), a blaKPC-2-carrying plasmid from Klebsiella pneumoniae sequence type 340, was determined. pKP1433 displayed extensive sequence and structural similarities with the IncN plasmids possessing the KPC-2-encoding Tn4401b isoform. However, the replication, partitioning, and stability of pKP1433 were determined by sequences related to diverse non-IncN plasmids.
Insights
The Klebsiella pneumoniae plasmid pKP1433, carrying blaKPC-2, shares similarities with IncN plasmids but has unique replication and stability features from other plasmid types.
Area of Science:
- Microbiology
- Genomics
- Plasmid Biology
Background:
- Klebsiella pneumoniae is a significant opportunistic pathogen.
- The blaKPC-2 gene confers carbapenem resistance, a critical public health concern.
- Plasmids are key vehicles for the spread of antibiotic resistance genes.
Purpose of the Study:
- To determine the complete nucleotide sequence of the pKP1433 plasmid.
- To analyze the genetic elements responsible for the plasmid's characteristics.
- To understand the evolutionary origins and maintenance mechanisms of pKP1433.
Main Methods:
- Whole-genome sequencing of the pKP1433 plasmid.
- Bioinformatic analysis of the nucleotide sequence.
- Comparative genomics with known plasmid sequences.
Main Results:
- The pKP1433 plasmid is 55,417 bp in length and carries the blaKPC-2 gene.
- It exhibits significant sequence and structural resemblance to IncN plasmids containing the Tn4401b isoform.
- Replication, partitioning, and stability determinants were found to be related to diverse non-IncN plasmids.
Conclusions:
- pKP1433 represents a hybrid plasmid with mixed genetic origins.
- Its unique combination of IncN-like and non-IncN elements influences its prevalence and spread.
- Understanding such mosaic plasmids is crucial for combating carbapenem-resistant Enterobacteriaceae.
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