| Literature DB >> 22196373 |
Song Liu1, Dongxu Zhang, Miao Wang, Wenjing Cui, Kangkang Chen, Guocheng Du, Jian Chen, Zhemin Zhou.
Abstract
BACKGROUND: Streptomyces transglutaminase (TGase) is naturally synthesized as zymogen (pro-TGase), which is then processed to produce active enzyme by the removal of its N-terminal pro-peptide. This pro-peptide is found to be essential for overexpression of soluble TGase in E. coli. However, expression of pro-TGase by E. coli requires protease-mediated activation in vitro. In this study, we developed a novel co- expression method for the direct production of active TGase in E. coli.Entities:
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Year: 2011 PMID: 22196373 PMCID: PMC3286405 DOI: 10.1186/1475-2859-10-112
Source DB: PubMed Journal: Microb Cell Fact ISSN: 1475-2859 Impact factor: 5.328
Figure 1Genetic organization for the construction of a set of vectors. (A) Single expression vectors. (B) Co-expression vectors.
Figure 2Expression of pro-TGase and TGase in . (A) SDS-PAGE analysis of TGase expression using single expression vectors. 1, 2: insoluble fractions of E. coli cells harboring pSTG and pTG, respectively; 3, 4: intracellular soluble fractions of cells harboring pSTG and pTG, respectively. 5, 6: supernatant and whole cell extracts of E. coli harboring pSPTG, respectively. (B) SDS-PAGE analysis of TGase expression using co-expression constructs (intracellular soluble fractions). (C) SDS-PAGE analysis of TGase expression using co-expression vectors (insoluble fractions). (D) Intracellular TGase activity of E. coli cells harboring the co-expression constructs. 1-9: E. coli cells harboring pTG-PRO, pTG-SPRO, pSTG-PRO, pSTG-SPRO, pPRO-TG, pPRO-STG, pSPRO-TG, pSPRO-STG, and pSPROT7STG, respectively. The bands of TGase and pro-TGase are indicated by downward and upward arrows, respectively.
Figure 3SDS-PAGE analysis of purified recombinant pro-TGase and TGase. 1: supernatants of E. coli cells harboring pSPTG; 2, 3: active fractions of nickel-affinity and the following gel-filtration chromatography of supernatants of E. coli cells harboring pSPTG, respectively; 4: intracellular soluble fraction of E. coli cells harboring pSPRO-STG; 5, 6: active fractions of nickel-affinity and the following gel-filtration chromatography of the intracellular soluble fraction of E. coli cells harboring pSPRO-STG, respectively.
Comparison of the catalytic properties of native and recombinant TGases.
| Native | 40 | 6.0 | 18.2 | 54.7 |
| apSPTG | 40 | 6.0 | 21.0 | 57.1 |
| pSPRO-STG | 40 | 6.0 | 22.0 | 56.6 |
a Pro-TGase was transformed into active TGase through the addition of dispase.
Figure 4A proposed mature pathway of TGase by co-expression in . (A) The co-expression in the order of TGase pro-peptide and TGase. (B) The co-expression in the order of TGase and its pro-peptide.