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Updated: Aug 11, 2026

Site-specific Bacterial Chromosome Engineering: ΦC31 Integrase Mediated Cassette Exchange (IMCE)
Published on: March 16, 2012
Diversity of silver resistance genes in IncH incompatibility group plasmids
A Gupta1, L T Phung, D E Taylor
1Department of Microbiology and Immunology, University of Illinois, M/C 790, 835 S. Wolcott Ave, Room E-703, Chicago, IL 60612-7344, USA. agupta@uic.edu
Abstract:
Silver compounds are used as antimicrobial agents in medicine and bacteria that develop resistance to silver cations (Ag(+)) pose problems similar to those of antibiotic-resistant bacteria. The first set of Ag(+) resistance genes (sil) was from plasmid pMG101, now assigned to the IncHI incompatibility group. Questions of whether sil genes are unique to pMG101 or are more widely found, and whether they are associated with a specific incompatibility group or occur in many plasmid groups and on bacterial chromosomes were addressed. sil genes were identified in five IncH plasmids, but not in plasmids of the IncP incompatibility group. Three sil genes (silP, silR and silE) from these plasmids were PCR-amplified, cloned, sequenced and compared to those of pMG101. Differences of 0-50 nt per kb of sequence were found. Predicted gene products were 0-6% different in amino acid sequence, but the differences did not alter residues thought to be involved in protein function (see supplementary data at http://mic.sgmjournals.org or http://www.uic.edu/depts/mcmi/individual/gupta/index.htm). For representative IncH plasmid R476b and pMG101 the effects of Ag(+) exposure on resistance levels were measured by growth. The inducibility of silC, silR and silE gene expression after Ag(+) exposure was studied by reverse transcriptase (RT)-PCR. Silver resistance increased after Ag(+) exposure for strains carrying plasmid R476b. silC and silE expression from R476b was inducible after Ag(+) exposure and was constitutive and high from pMG101. The mRNA levels for the regulatory gene silR was constitutive for both pMG101 and R476b. Close homologues for silABC(ORF96)RS from pMG101 are clustered on the chromosomes of Escherichia coli strains K-12 and O157:H7, without contiguous silP and silE homologues. Insertion deletions of the E. coli K-12 chromosomal homologues for silA and silP gave Ag(+) hypersensitivity for growth. The silA homologue knockout was complemented back to wild-type resistance by the same gene cloned on a plasmid. Homologues of sil genes have also been identified on other enterobacterial genomes.
Insights
Silver resistance genes (sil) are widespread in bacteria, found on various plasmids and chromosomes, not just the original pMG101. These genes are crucial for combating silver cation resistance in bacteria.
Area of Science:
- Microbiology
- Molecular Biology
- Genetics
Background:
- Silver compounds are vital antimicrobials, but bacterial resistance to silver cations (Ag(+)) mirrors antibiotic resistance challenges.
- The initial silver resistance (sil) genes were identified on plasmid pMG101, belonging to the IncHI incompatibility group.
Purpose of the Study:
- To investigate the prevalence and distribution of sil genes beyond plasmid pMG101.
- To determine if sil genes are associated with specific plasmid groups or found on bacterial chromosomes.
Main Methods:
- PCR amplification, cloning, and sequencing of sil genes (silP, silR, silE) from IncH plasmids.
- Comparison of sil gene sequences between different plasmids and pMG101.
- Measurement of Ag(+) resistance levels and gene expression (silC, silR, silE) using growth assays and RT-PCR.
- Analysis of chromosomal sil gene homologues in Escherichia coli strains.
Main Results:
- Sil genes were found in five IncH plasmids but not in IncP plasmids.
- Sequences of sil genes from IncH plasmids showed minor variations compared to pMG101.
- Silver resistance levels increased upon Ag(+) exposure in strains with plasmid R476b.
- SilC and silE expression was inducible by Ag(+) in R476b, while constitutive in pMG101; silR expression was constitutive in both.
- Chromosomal homologues of silABC(ORF96)RS were identified in E. coli K-12 and O157:H7.
- Disruption of E. coli K-12 chromosomal silA and silP homologues resulted in Ag(+) hypersensitivity.
Conclusions:
- Silver resistance (sil) genes are not unique to pMG101 and are distributed across various IncH plasmids and bacterial chromosomes.
- Homologues of sil genes are present in other enterobacteria, indicating a broader role in silver resistance.
- The findings highlight the adaptability of bacterial silver resistance mechanisms and their potential impact on antimicrobial strategies.
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