| Literature DB >> 23166700 |
Jun-Ren Sun1, Cherng-Lih Perng, Ming-Chin Chan, Yuji Morita, Jung-Chung Lin, Chih-Mao Su, Wei-Yao Wang, Tein-Yao Chang, Tzong-Shi Chiueh.
Abstract
Over-expression of AdeABC efflux pump stimulated continuously by the mutated AdeRS two component system has been found to result in antimicrobial resistance, even tigecycline (TGC) resistance, in multidrug-resistant Acinetobacter baumannii (MRAB). Although the insertion sequence, ISAba1, contributes to one of the AdeRS mutations, the detail mechanism remains unclear. In the present study we collected 130 TGC-resistant isolates from 317 carbapenem resistant MRAB (MRAB-C) isolates, and 38 of them were characterized with ISAba1 insertion in the adeS gene. The relationship between the expression of AdeABC efflux pump and TGC resistant was verified indirectly by successfully reducing TGC resistance with NMP, an efflux pump inhibitor. Further analysis showed that the remaining gene following the ISAba1 insertion was still transcribed to generate a truncated AdeS protein by the Pout promoter on ISAba1 instead of frame shift or pre-termination. Through introducing a series of recombinant adeRS constructs into a adeRS knockout strain, we demonstrated the truncated AdeS protein was constitutively produced and stimulating the expression of AdeABC efflux pump via interaction with AdeR. Our findings suggest a mechanism of antimicrobial resistance induced by an aberrant cytoplasmic sensor derived from an insertion element.Entities:
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Year: 2012 PMID: 23166700 PMCID: PMC3498117 DOI: 10.1371/journal.pone.0049534
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Bacterial strains and plasmids used in this study.
| Strains or plasmids | Relevant characteristics | Reference | |
|
| DH5α | Φ80d, | Lab stock |
|
| ATCC 15151 |
| ATCC |
| ABmut02 | Derived from BCRC15884. | This study | |
| AB039 | clinical MDR strain, TGC MIC = 2 mg/L, | ||
| AB090 | clinical MDR strain, TGC MIC = 1 mg/L, | This study | |
| AB096 | clinical MDR strain, TGC MIC = 16 mg/L, | ||
| AB260 | clinical MDR strain, TGC MIC = 1 mg/L, | This study | |
| AB293 | clinical MDR strain, TGC MIC = 16 mg/L, | This study | |
| AB392 | clinical MDR strain, TGC MIC≦ 0.5 mg/L, | This study | |
| Plasmids | pMU125 |
|
|
| pCR2.1-Topo | Suicide plasmid for | Invitrogen | |
| pCR2.1- | pCR2.1-Topo containing a 513-bp internal fragment of the adeR. KanR, AmpR | This study | |
| pYM102 | mini-CTX:: |
| |
| pS01 |
| This study | |
| pRS- | Derived from pRS, mini-CTX:: | This study | |
| pRS- | Derived from pRS, mini-CTX:: | This study | |
| pRS- | Derived from pRS, mini-CTX:: | This study | |
| pRS- | Derived from pRS, mini-CTX:: | This study | |
| pRS- | Derived from pRS, mini-CTX:: | This study | |
| pRS- | Derived from pRS, mini-CTX:: | This study | |
| pRS-P | Derived from pRS-adeRS (AB293), | This study | |
| pRS-P | Derived from pRS, mini-CTX:: truncated | This study | |
| pRS-P | Derived from pRS_P | This study |
Oligonucleotides used in this study.
| Primer name | Sequence | Features/purpose | Source |
| adeRS_1f |
| Detection the IS element insertion within the |
|
| adeRS_1849r |
| ||
| adeRS_689r |
| ||
| adeRS_776f |
| ||
| ISAba1-F |
| with ade RS_1849r primer to confirme the nsertion of IS | This study |
| ISAba1-R |
| with ade RS_1f primer to confirme the insertion of IS | This study |
| pWH1266_ori_PstI_F |
| Cloning of | This study |
| pWH1266_ori_PstI_SmaI_R |
| ||
| AdeA_promoter_f_BamHI |
| Cloning | This study |
| AdeS_r_SmaI |
| ||
| AdeR_r_SmaI |
| With AdeA_promoter_f | This study |
| ISaba1Pout_f_BamHI |
| With AdeS_r | This study |
| adeR_6f |
| Cloning the partial sequence of | This study |
| adeR_514r |
| ||
| adeA_F |
| RT- PCR of | |
| adeA_R |
| ||
| adeB_F |
| RT- PCR of | |
| adeB_R |
| ||
| QPCR_adeRS1661_f |
| RT- PCR of | This study |
| QPCR_adeRS1782_r |
| ||
| QPCR_adeR96_f |
| RT- PCR of | This study |
| QPCR_adeR220_r |
| ||
| rpoB_f |
| RT- PCR of | |
| rpoB_r |
| ||
| TruncatedAdeS_SDMut_sense |
| change the start code ATG to AAG in soluble | This study |
Figure 1Tigecycline MIC profile of the clinical A. baumannii isolates.
(A) Distribution of tigecycline MIC of the clinical A. baumannii isolates with (black bar) and without (grey bar) insertion of additional DNA in their adeRS operon (B) MIC to tigecycline alone (grey bar) and to tigecycline/NMP combination (black bar) for the 41 clinical A. baumannii isolates with insertion of additional DNA in their adeRS operon.
Figure 2Pulsed-field gel electrophoresis (PFGE) for ApaI of 41 A. baumannii isolates with insertion of additional DNA in their adeRS operon.
Dendrogram was generated by UPGMA clustering.
Figure 3Alteration of the adeRS operons by insertion of ISAba125 or ISAba1 in multidrug resistant A. baumannii isolates.
(A) Genetic scheme of wide type adeRS operon in ATCC 15151 and two insertion mutations. ISAba125 disrupts the adeR gene and ISAba1 disrupts the adeS gene in clinical multidrug resistant A. baumannii isolates. Open arrows indicate coding sequences and direction of transcription. Pade is the promoter of the adeABC operon. Closed arrowheads indicate the position and orientation of the primers used in quantitative adeR and adeS real-time PCR (all positions are according to accession no. JQ690823-5 in GenBank). IRR, inverted repeat-right; IRL, inverted repeats-left; DR, direct repeat. (B) Presumed promoters in ISAba1 and downstream coding sequence of the truncated AdeS. The deduced amino-acid sequence is designated in a single letter code below the nucleotide sequence and the star sign indicates stop codon. The inverted repeat sequences (IRL) of ISAba1 are dash-underlined. The −35 and −10 motifs of promoters are indicated as numbers. Pin is the promoter for transposase gene in ISAba1, and Pout is the promoter for the truncated AdeS derived from ISAba1 insertion. The truncated AdeS start codon is boxed.
Relationship between tigecycline MICs and expression of adeRS and adeABC operons in clinical strains of A. baumannii.
| Differential quantification of gene expression (fold) | ||||||
| Strains | Strains | TGC MIC (mg/L) |
|
|
|
|
| Without insertion | ATCC 15151 | ≦0.5 | 1.00 | 1.00 | 1.00 | 1.00 |
| AB39 | 2 | 1.50±0.73 | 0.65±0.2 | 24.15±5.95 | 42.64±22.49 | |
| AB96 | 16 | 1.55±0.15 | 0.67±0.05 | 285.75±106.12 | 622.03±189.32 | |
| With insertion | AB392 (IS | ≦0.5 | 1.21±0.25 | 0.08±0.02 | 0.55±0.33 | 1.05±0.64 |
| AB260 (IS | 1 | 1.87±0.14 | 2.82±0.88 | 1.02±0.54 | 1.71±0.59 | |
| AB293 (IS | 16 | 2.45±0.98 | 2.12±0.35 | 51.32±9.21 | 81.75±68.78 | |
Figure 4Construction of the pRS recombinant series.
(A) Strategies for obtaining a series of DNA fragments containing promoter region of adeABC operon and a series of adeRS operon variants from wild type (wt) ATCC 15151 and drug resistant strains (260, 293) by PCR. Open arrows denote coding sequences and indicate the direction of transcription in the bacterial genome. The white rectangle box denotes the region of Pade promoter (Pade and Pre). The red rectangle box denotes the promoter region in ISAba1 (Pin and Pout). Arrows following the rectangle boxes together indicate the PCR fragments used to generate pRS recombinant series. (B) Construction map of the promoter-less lacZ gene of pRS system. The pRS system was derived from pS01, which remove lacI-PT7 promoter by engineered SmaI and BamHI cutting. The pRS system was obtained and used for cloning PCR fragments into upstream of the promoter-less lacZ gene of pRS system between SmaI and BamHI restriction sites. The rectangle box indicates the region of promoters. The region of Pade promoter region contains two overlapped promoters in opposite direction (Pade and Pre). Two overlapped promoters, Pin and Pout, were in the region of promoter region in ISAba1. The expression level of lacZ gene represented for the activity of promoter of adeABC operon or Pin promoter of ISAba1.
Antimicrobial susceptibilities of the various A. baumannii transformants.
| MIC (mg/liter) of | ||||||
| Strains | with plasmid | TGC | TGC+ NMP | FEP | CIP | LEV |
| ATCC 15151 (wt | no plasmid | 0.25 | 0.25 | 2 | ≦0.25 | ≦0.12 |
| pS01 | 0.125 | 0.0625 | 2 | ≦0.25 | ≦0.12 | |
| pRS- | 0.25 | 0.125 | 2 | ≦0.25 | ≦0.12 | |
| pRS- | 2 | 0.25 | 16 | 1 | 0.25 | |
| pRS- | 2 | 0.25 | 16 | 1 | 0.25 | |
| pRS- | 0.25 | 0.125 | 2 | ≦0.25 | ≦0.12 | |
| pRS- | 0.25 | 0.125 | 2 | ≦0.25 | ≦0.12 | |
| pRS- | 0.25 | 0.125 | 2 | ≦0.25 | ≦0.12 | |
| pRS-P | 2 | 0.25 | 16 | 0.5 | 0.25 | |
| pRS-P | 2 | 0.25 | 16 | 0.5 | 0.25 | |
| pRS-P | 0.25 | 0.125 | 2 | ≦0.25 | ≦0.12 | |
| ABmut02 ( | no plasmid | 0.25 | 0.25 | 2 | ≦0.25 | ≦0.12 |
| pS01 | 0.25 | 0.25 | 2 | ≦0.25 | ≦0.12 | |
| pRS- | 0.125 | 0.0625 | 2 | ≦0.25 | ≦0.12 | |
| pRS- | 2 | 0.25 | 16 | 0.5 | 0.25 | |
| pRS- | 2 | 0.25 | 32 | 1 | 0.25 | |
| pRS- | 0.125 | 0.0625 | 2 | ≦0.25 | ≦0.12 | |
| pRS- | 0.125 | 0.0625 | 2 | ≦0.25 | ≦0.12 | |
| pRS- | 0.125 | 0.0625 | 2 | ≦0.25 | ≦0.12 | |
| pRS-P | 0.125 | 0.0625 | 2 | ≦0.25 | ≦0.12 | |
| pRS-P | 0.125 | 0.0625 | 2 | ≦0.25 | ≦0.12 | |
| pRS-P | 0.125 | 0.0625 | 2 | ≦0.25 | ≦0.12 | |
Figure 5β-galactosidase activities of transformed strains with various pRS recombinants.
ATCC 15151 and ABmut02 cells transformed with various pRS recombinants were grown in LB medium at 37°C overnight. The measurement of β-galactosidase activity was repeated at least three times, and the mean values of one representative experiment performed in triplicate are reported (error bars indicate the standard deviation). The measurement of β-galactosidase activity represents for the activity driven by either Pade of adeABC operon or Pin of ISAba1.