Expression of antibiotic resistance genes in the integrated cassettes of integrons
- 1 January 1995
- journal article
- research article
- Published by American Society for Microbiology in Antimicrobial Agents and Chemotherapy
- Vol. 39 (1) , 155-162
- https://doi.org/10.1128/aac.39.1.155
Abstract
Plasmids containing cloned integron fragments which differ only with respect to either the sequence of the promoter(s) or the number and order of inserted cassettes were used to examine the expression of resistance genes encoded in integron-associated gene cassettes. All transcripts detected commenced at the common promoter P(ant), and alterations in the sequence of P(ant) affected the level of resistance expressed by cassette genes. When both P(ant) and the secondary promoter P2 were present, transcription from both promoters was detected. When more than one cassette was present, the position of the cassette in the array influenced the level of antibiotic resistance expressed by the cassette gene. In all cases, the resistance level was highest when the gene was in the first cassette, i.e., closest to P(ant), and was reduced to different extents by the presence of individual upstream cassettes. In Northern (RNA) blots, multiple discrete transcripts originating at P(ant) were detected, and only the longer transcripts contained the distal genes. Together, these data suggest that premature transcription termination occurs within the cassettes. The most abundant transcripts appeared to contain one or more complete cassettes, and is possible that the 59-base elements found at the end of the cassettes (3' to the coding region) not only function as recombination sites but may also function as transcription terminators.Keywords
This publication has 24 references indexed in Scilit:
- Diversity and relative strength of tandem promoters for the antibiotic-resistance genes of several integronGene, 1994
- Gene cassettes from the insert region of integrons are excised as covalently closed circlesMolecular Microbiology, 1992
- Site‐specific insertion of genes into integrons: role of the 59‐base element and determination of the recombination cross‐over pointMolecular Microbiology, 1991
- Sequence analysis of the inducible chloramphenicol resistance determinant in the TN1696 integron suggests regulation by translational attenuationPlasmid, 1991
- A novel family of potentially mobile DNA elements encoding site‐specific gene‐integration functions: integronsMolecular Microbiology, 1989
- Oxacillin‐hydrolysing β‐lactamasesEuropean Journal of Biochemistry, 1989
- Mechanisms of mRNA decay in bacteria: a perspectiveGene, 1988
- Nucleotide sequence analysis of 2″‐aminoglycoside nucleotidyl‐transferase ANT(2″) from Tn4000: its relationship with AAD(3″) and impact on Tn21 evolutionMolecular Microbiology, 1988
- Differential mRNA stability controls relative gene expression within a polycistronic operonCell, 1987
- The aminoglycoside-resistance operon of the plasmid pSa: nucleotide sequence of the streptomycin-spectinomycin resistance geneGene, 1985