| Literature DB >> 24139229 |
Asif Rahman, Elisabeth Linton, Alex D Hatch, Ronald C Sims, Charles D Miller1.
Abstract
BACKGROUND: Polyhydroxyalkanoates (PHAs) are a group of biodegradable plastics that are produced by a wide variety of microorganisms, mainly as a storage intermediate for energy and carbon. Polyhydroxybutyrate (PHB) is a short-chain-length PHA with interesting chemical and physical properties. Large scale production of PHB is not wide-spread mainly due to the downstream processing of bacterial cultures to extract the PHB. Secretion of PHB from Escherichia coli could reduce downstream processing costs. PHB are non-proteinaceous polymers, hence cannot be directly targeted for secretion. Phasin, PhaP1, is a low molecular weight protein that binds to PHB, reducing PHB granule size. In this study PHB is indirectly secreted with PhaP1 from E. coli via type I secretion using HlyA signal peptides.Entities:
Year: 2013 PMID: 24139229 PMCID: PMC4015293 DOI: 10.1186/1754-1611-7-24
Source DB: PubMed Journal: J Biol Eng ISSN: 1754-1611 Impact factor: 4.355
Figure 1SDS polyacrylamide gel and corresponding immunoblot of subcellular fractions for PhaP1:HlyA. C – cytoplasmic fraction, P – periplasmic fraction, M – membrane fraction, S – concentrated supernatant (media) fraction. The position of phasin bands varies from roughly 22–26 kDa.
Figure 2CFU/mL vs. Time (hours) for secreting and non-secreting strains of PHB producing , averaged from triplicate experiments (one standard deviation shown).
Production of PHB in secreting (pCMEL3 + pLG575) and non-secreting (pBHR68 + pLG575) strains of 24 and 48 h
| | | | |||||
|---|---|---|---|---|---|---|---|
| Non-secreting | 24 | 0.31 ± 0.35 | 41.93 ± 13.5 | 0.40 ± 0.27 | 5.65 ± 1.1 | 6.05 ± 1.1 | 0.40 ± 0.07 |
| | 48 | 0.72 ± 0.89 | 47.24 ± 6.0 | 0.50 ± 0.41 | 5.43 ± 1.7 | 5.93 ± 1.8 | 0.40 ± 0.12 |
| Secreting | 24 | 0.69 ± 0.18 | 28.85 ± 0.41 | 0.40 ± 0.06 | 3.42 ± 0.33 | 3.82 ± 0.3 | 0.25 ± 0.02 |
| 48 | 28.29 ± 7.2* | 38.80 ± 15.5 | 2.57 ± 0.75* | 4.58 ± 2.47 | 7.15 ± 2.6 | 0.48 ± 0.17 | |
*Indicates statistical significance within column (p < 0.05).
Figure 3SEM images taken from overnight cultures of XL1Blue harboring different plasmid systems: A) pBHR68 (non-secreting), B) pCMEL3 (non-secreting with phasin overexpression), and C) pCMEL3 + pLG575 (complete PHB production and secretion system).
Strains, plasmids, and oligonucleotides used in this study
| | | |
| BL21-Gold (DE3) | E. coli B F– ompT hsdS(rB– mB–) dcm+ TetR gal λ(DE3) endA Hte | Agilent technologies |
| XL1 Blue | recA1 endA1 gyrA96 thi-1 hsdR17 supE44 relA1 lac [F’ proAB lacIqZΔM15 Tn10 (Tetr)] | Agilent technologies |
| Cupriavidus necator H16 | Wild type, PHA producing | ATCC 17699 |
| | | |
| pLG575 | pACYC184 derivative, HlyBD, p15A origin, CmR | [ |
| pBHR68 | pBluescript SK-, phbCAB genes from R. eutropha | [ |
| pSB1AK3 | High copy BioBrick vector, pMB1 origin, AmpR and KanR | [ |
| pSB1A3 | High copy BioBrick vector, pMB1 origin, AmpR | [ |
| pSB3K3 | Medium copy BioBrick standard vector, p15A origin, KanR | [ |
| pCMEL1 | phaP1, C-terminal BioFusion with HlyA signal peptide, Lac promoter (BBa_R0010), RBS(BBa_B0034), in pSB1A3 | This study |
| pCMEL2 | phaP1, C-terminal BioFusion with HlyA signal peptide, Lac promoter (BBa_R0010), RBS(BBa_B0034), in pSB3K3 | This study |
| pCMEL3 | phaP1, C-terminal BioFusion with HlyA signal peptide, Lac promoter (BBa_R0010), RBS(BBa_B0034), in pBHR68 | This study |
| | | |
| PhaP1FOR | This study | |
| PhaP1REV | This study | |
| g114t | This study | |
| g114t_antisense | This study |
Figure 4PHB secretion. A. Schematic for PHB secretion containing dual plasmid system pCMEL3 and pLG575. Phasin with attached signal peptide binds to PHB granule surface and the PHB-phasin-signal peptide complex is targeted for type I secretion. B. pCMEL3 plasmid consisting of phaC, phaC, and phaB genes from pBHR68. pCMEL3 also contains the genes needed for phasin-HylA production.