| Literature DB >> 29021974 |
Chang Liu1,2, Chuchu Li1,2, Yuhuang Chen2, Huijing Hao2, Junrong Liang2, Ran Duan2, Zhaoke Guo2, Jing Zhang2, Zhongzhi Zhao3, Huaiqi Jing2, Xin Wang2, Shihe Shao1.
Abstract
Yersinia enterocolitica encodes a chromosomal AmpC β-lactamase under the regulation of the classical ampR-ampC system. To obtain a further understanding to the role of low-molecular-mass penicillin-binding proteins (LMM PBPs) including PBP4, PBP5, PBP6, and PBP7, as well as NagZ and AmpR in ampC regulation of Y. enterocolitica, series of single/multiple mutant strains were systematically constructed and the ampC expression levels were determined by luxCDABE reporter system, reverse transcription-PCR (RT-PCR) and β-lactamase activity test. Sequential deletion of PBP5 and other LMM PBPs result in a continuously growing of ampC expression level, the β-lactamse activity of quadruple deletion strain YEΔ4Δ5Δ6Δ7 (pbp4, pbp5, pbp6, and pbp7 inactivated) is approached to the YEΔD123 (ampD1, ampD2, and ampD3 inactivated). Deletion of nagZ gene caused two completely different results in YEΔD123 and YEΔ4Δ5Δ6Δ7, NagZ is indispensable for YEΔ4Δ5Δ6Δ7 ampC derepression phenotype but dispensable for YEΔD123. AmpR is essential for ampC hyperproduction in these two types of strains, inactivation of AmpR notable reduced the ampC expression level in both YEΔD123 and YEΔ4Δ5Δ6Δ7.Entities:
Keywords: AmpC β-lactamase; AmpD; AmpR; NagZ; PBPs; Yersinia enteocolitica
Mesh:
Substances:
Year: 2017 PMID: 29021974 PMCID: PMC5623720 DOI: 10.3389/fcimb.2017.00425
Source DB: PubMed Journal: Front Cell Infect Microbiol ISSN: 2235-2988 Impact factor: 5.293
Strains and plasmids used in this study.
| 105.5R(r) | Wild type; completely sequenced | Wang et al., |
| YEΔZ | 105.5R(r) | This work |
| YEΔD123 | 105.5R(r) | Liu et al., |
| YEΔD123ΔZ | 105.5R(r) | This work |
| YEΔD123ΔR | 105.5R(r) | This work |
| YEΔ4 | 105.5R(r) | This work |
| YEΔ5 | 105.5R(r) | This work |
| YEΔ6 | 105.5R(r) | This work |
| YEΔ7 | 105.5R(r) | This work |
| YEΔ4Δ5 | 105.5R(r) | This work |
| YEΔ4Δ6 | 105.5R(r) | This work |
| YEΔ4Δ7 | 105.5R(r) | This work |
| YEΔ5Δ6 | 105.5R(r) | This work |
| YEΔ5Δ7 | 105.5R(r) | This work |
| YEΔ6Δ7 | 105.5R(r) | This work |
| YEΔ4Δ5Δ6 | 105.5R(r) | This work |
| YEΔ4Δ5Δ7 | 105.5R(r) | This work |
| YEΔ4Δ6Δ7 | 105.5R(r) | This work |
| YEΔ5Δ6Δ7 | 105.5R(r) | This work |
| YEΔ4Δ5Δ6Δ7 | 105.5R(r) | This work |
| YEΔ4Δ5Δ6Δ7ΔZ | 105.5R(r) | This work |
| YEΔ4Δ5Δ6Δ7ΔR | 105.5R(r) | This work |
| S17 λpir | λ-pir R6K( | Simon et al., |
| pDS132 | CmR; Conditionally replicating vector; R6K origin, mobRK4 transfer origin, sucrose-inducible | Philippe et al., |
| pΔNagZ | CmR; pDS132 containing 5′ and 3′ flanking sequence of | This work |
| pΔPBP4 | CmR; pDS132 containing 5′ and 3′ flanking sequence of | This work |
| pΔPBP5 | CmR; pDS132 containing 5′ and 3′ flanking sequence of | This work |
| pΔPBP6 | CmR; pDS132 containing 5′ and 3′ flanking sequence of | This work |
| pΔPBP7 | CmR; pDS132 containing 5′ and 3′ flanking sequence of | This work |
| pΔAmpR | CmR; pDS132 containing 5′ and 3′ flanking sequence of | This work |
| pLUX | CmR; pBBRlux containing promoter sequence of | Liu et al., |
| pNagZ | TcR; pSRKTc containing 105.5R(r) | This work |
Figure 1Analysis of the ampC promoter activities in Y. enterocolitica 105.5R(r) wild-type strain and pbp mutants. The induction group was incubated with 40 μg/ml cefoxitin for 1 h. The error bars represent the standard deviations of triplicate tests.
Relative mRNA level of ampC in wild-type strain and its derived mutants.
| WT | 1 | 1.3 ± 0.4 |
| YEΔ4 | 1 ± 0.6 | 1.7 ± 0.5 |
| YEΔ5 | 5.8 ± 3.5 | 7.8 ± 3.0 |
| YEΔ6 | 1.2 ± 0.6 | 1.8 ± 0.6 |
| YEΔ7 | 0.7 ± 0.4 | 1.2 ± 0.5 |
| YEΔ4Δ5 | 10 ± 5 | 31 ± 16 |
| YEΔ4Δ6 | 1 ± 0.2 | 1.4 ± 0.4 |
| YEΔ4Δ7 | 0.7 ± 0.2 | 1.2 ± 0.5 |
| YEΔ5Δ6 | 11 ± 1 | 15 ± 8 |
| YEΔ5Δ7 | 7.7 ± 1.0 | 12 ± 4.8 |
| YEΔ6Δ7 | 1.6 ± 0.3 | 2.4 ± 1.4 |
| YEΔ4Δ5Δ6 | 22 ± 5 | 32 ± 18 |
| YEΔ4Δ5Δ7 | 26 ± 4 | 41 ± 13 |
| YEΔ4Δ6Δ7 | 2.1 ± 0.5 | 3.3 ± 1.6 |
| YEΔ5Δ6Δ7 | 8.5 ± 1.0 | 12 ± 5 |
| YEΔ4Δ5Δ6Δ7 | 42 ± 23 | 58 ± 10 |
Relative amount of mRNA compared to wild-type strain 105.5R(r) basal expression.
Induction assay were performance with 40 μg/ml cefoxitin.
Figure 2The role of AmpD, PBPs, NagZ, and AmpR in the β-lactamase expression of Y. enterocolitica by measuring the β-lactamase activity. These data are the average of three repeat experiments. The induction group was incubated with 40 μg/ml cefoxitin for 1 h. Error bars indicate the standard deviations of triplicate tests.
The MIC values of β-lactam antibiotics in wild-type strain and its derived mutants.
| AMP | 32 | 64 | 32 | 64 | 16 |
| SAM | 16 | 16 | 16 | 16 | 8 |
| TIC | 2 | 4 | 2 | 4 | 0.5 |
| TZP | 1 | 4 | 2 | 4 | 0.25 |
| PIP | 1 | 16 | 16 | 16 | 4 |
| CFZ | 128 | 512 | 512 | 512 | 64 |
| CAZ | 0.25 | 2 | 1 | 2 | 0.5 |
| FEP | 0.25 | 0.25 | 0.125 | 0.06 | 0.03 |
| CRO | ≤0.125 | 0.5 | 0.25 | 0.5 | 0.125 |
| ATM | ≤0.125 | 0.5 | 0.5 | 1 | 0.12 |
| IPM | ≤0.125 | 0.5 | 0.25 | 0.25 | 0.25 |
| MEM | ≤0.125 | ≤0.125 | ≤0.125 | ≤0.125 | ≤0.125 |
| CL | ≤0.5 | ≤0.5 | ≤0.5 | 0.75 | ≤0.5 |
AMP, Ampicillin; SAM, Ampicillin-sulbactam; TIC, Ticarcillin; TZP, Piperacillin-tazobactam; PIP, Piperacillin; CFZ, Cefazolin; CAZ, Ceftazidime; FEP, Cefepime; CRO, Ceftriaxone; ATM, Aztreonam; IPM, Imipenem; MEM, Meropenem; CL, Colistin.
MIC was determined in triplicate by standard two-fold serial broth microdilution method.
Figure 3The N-acetyl-β-glucosamididase activity of wild-type Y. enterocolitica and nagZ deletion mutants was tested using 4-nitrophenyl N-acetyl-β-D-glucosaminide as a chromogenic substrate, and the p-nitrophenol present in the supernatant was measured at 405 nm.