| Literature DB >> 25163588 |
Xiaoyuan Hu, Ruoyu Mao, Yong Zhang, Da Teng, Xiumin Wang, Di Xi, Jianzhong Huang1, Jianhua Wang.
Abstract
BACKGROUND: Enterocin A is a classic IIa bacteriocin isolated firstly from Enterococcus faecium CTC492 with selective antimicrobial activity against Listeria strains. However, the application of enterocin A as an anti-Listeria agent has been limited due to its very low native yield. The present work describes high production of enterocin A through codon optimization strategy and its character study.Entities:
Mesh:
Substances:
Year: 2014 PMID: 25163588 PMCID: PMC4160546 DOI: 10.1186/s12866-014-0220-8
Source DB: PubMed Journal: BMC Microbiol ISSN: 1471-2180 Impact factor: 3.605
Figure 1Construction of the expression plasmid pPICZ α A-EntA. A, The nucleotide sequence of EntA and its corresponding amino acid sequence. The upper line indicates the wild-type EntA gene sequence. The middle line is the codon-optimized EntA gene sequence. Optimized codons are underlined with boldface type. The lower line represents the amino acid sequence of EntA. The termination codon is marked by an asterisk. B, Map of the recombinant plasmid pPICZαA-EntA. C, Electrophoretic analysis of the recombinant vector containing the EntA gene. Lane 1, DNA marker; lane 2, pPICZαA-EntA digested by XhoI and XbaI.
Figure 2Expression and purification of rEntA. A, Total secreted protein level and antimicrobial titer of the fermentation supernatants of recombinant P. pastoris at the shake-flask level (bars represent the standard error of the mean). B, Antimicrobial activity of the fermentation supernatants of recombinant P. pastoris at the fermenter level. 1–9, 50 μl supernatant taken at 0, 12, 24, 36, 48, 60, 72, 84, and 90 h of induction, respectively; 10, 1 μg ampicillin. C, The total secreted protein level and antimicrobial titer in the fermenter level (bars represent the standard error of the mean). D, Tricine-SDS-PAGE analysis of rEntA secreted in the fermentation supernatant of P. pastoris cultures at the fermenter level. Lane M, 5 μl molecular mass standards (from top to bottom: 40, 25, 15, 10, 4.6 and 1.7 kDa); Lanes 1–9, 20 μl supernatant taken at 0, 12, 24, 36, 48, 60, 72, 84 and 90 h of induction, respectively. E, MALDI-TOF map of rEntA. F, Purification and identification of rEntA. Lane 1, purified rEntA (0.1 μg); Lane M, 5 μl molecular mass standards (from top to bottom: 40, 25, 15, 10, 4.6 and 1.7 kDa). Lane 2, 10 μl of rEntA supernatant taken at 24 h of induction.
Antimicrobial spectrum of rEntA
|
|
|
|---|---|
| Gram-positive | |
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
| Gram-negative |
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
|
Note: “+” refers to positive antimicrobial activity (inhibition zone > 6 mm); “-” refers to negative antimicrobial activity (inhibition zone ≤ 6 mm).
Figure 3Time-kill curves of rEntA. L. ivanovii ATCC19119 was incubated in the presence of medium alone or in the presence of 1×, 2×, or 4× MIC of rEntA. Ampicillin of 2 × MIC was used as a positive control. Three duplicate observations were made; bars represent the standard error of the mean.
Figure 4Effects of pH, temperature and proteolytic enzymes on the rEntA activity. A, pH stability of rEntA. Purified rEntA was incubated in buffers with a pH range from 2 to 10 at 37°C for 12 h. The initial activity of the sample in a buffer with a pH of 6 was described as 100% activity. B, Thermal stability of EntA. Purified rEntA was incubated in buffers with a pH range from 2 to 10 at temperatures of 37, 60, 80, and 100°C for 1 h. The initial activity of the sample in a buffer with a pH of 6 was described as 100% activity. C, Proteolysis resistance of rEntA. Purified rEntA was incubated with pepsin, papain and trypsin at 37°C for 4 h. The residual antimicrobial activity of samples was tested after the pH was readjusted to pH 6.0 with sodium phosphate buffer.
Figure 5Effect of NaCl concentration on the activity of rEntA. Control: L. ivanovii ATCC19119 was incubated in the absence of rEntA. 4 × MIC: L. ivanovii ATCC19119 was incubated in the presence of rEntA at 4 × MIC.
Strains used in the antimicrobial activity assays
|
|
|
|---|---|
| Gram-positive | |
|
| CICCa |
|
| CGMCCb |
|
| CGMCC |
|
| CGMCC |
|
| CVCCc |
|
| CVCC |
|
| CGMCC |
|
| CGMCC |
|
| CVCC |
|
| Stored in our lab |
|
| CGMCC |
| Gram-negative | |
|
| CGMCC |
|
| CVCC |
|
| CMCCd |
|
| CVCC |
|
| CVCC |
Note: aChina Center of Industrial Culture Collection, bChina General Microbiological Culture Collection, cChina Veterinary Culture Collection, dChina Center for Medical Culture Collection.