| Literature DB >> 27793152 |
Song Liu1, Miao Wang2, Guocheng Du3,4, Jian Chen5,6.
Abstract
BACKGROUND: Transglutaminases (TGase), which are synthesized as a zymogen (pro-TGase) in Streptomyces sp., are important enzymes in the food industry. Because this pro-peptide is essential for the correct folding of Streptomyces TGase, TGase is usually expressed in an inactive pro-TGase form, which is then converted to active TGase by the addition of activating proteases in vitro. In this study, Streptomyces hygroscopicus TGase was actively produced by Streptomyces lividans through promoter engineering and codon optimization.Entities:
Keywords: Codon optimization; Endogenous promoter; Streptomyces hygroscopicus; Streptomyces lividans; Transglutaminase
Mesh:
Substances:
Year: 2016 PMID: 27793152 PMCID: PMC5084433 DOI: 10.1186/s12896-016-0304-7
Source DB: PubMed Journal: BMC Biotechnol ISSN: 1472-6750 Impact factor: 2.563
Fig. 1Production of TGase by S. lividans TK24/pIJ86/tgl. a The gene structure of tg1. b Construction of TGase expression plasmid pIJ86/tg1. c TGase activity assay of the culture supernatants of Streptomyces strains. d SDS-PAGE analysis of the TGases in the culture supernatants of Streptomyces strains. Labeling for (a): The numbers in the illustration indicate the base positions. Labeling for (c): 1: S. lividans TK24/pIJ86/tgl (the recombinant strain that expresses the S. hygroscopicus TGase ORF using the TGase endogenous promoter), 2: S. lividans TK24/pIJ86 (the control strain that carries pIJ86), 3: S. lividans TK24 (the control strain without the expression plasmid), 4: S. hygroscopicus WSH03-13 (the wild type strain that produces TGase). Labels for (d): M: protein marker, 1: S. lividans TK24/pIJ86/tgl, 2: S. lividans TK24/pIJ86, 3: S. lividans TK24, 4: S. hygroscopicus WSH03-13. The recombinant S. lividans TK24 were inoculated into 30 mL of medium (which contained 50 μg/mL apramycine) and cultured at 30 °C and 200 rpm for 48 h
Fig. 2The effect of the endogenous promoter modification on the expression of TGase in S. lividans. a Partially deleting the 5′-end of the TGase promoter region. b Partially deleting the 3′-end of the TGase promoter region. The recombinant S. lividans TK24 were inoculated into 30 mL of medium (which contained 50 μg/mL apramycine) and cultured at 30 °C and 200 rpm for 48 h
Fig. 3Codon optimization of S. hygroscopicus WSH03-13 TGase. The Greek numerals (left side) indicated the sequence type of TGase: I: original sequence of S. hygroscopicus TGase ORF; II: Streptomyces preferred gene sequence of the TGase ORF; III: amino acid sequence of the TGase ORF. The grey shadows and “---” indicated the mutated positions and invariant positions. The numbers (right side) indicated the nucleotide sequences
Fig. 4The effect of codon optimization on the expression of TGase in S. lividans. The plasmid pTGO encoded TGase ORF with the optimized promoter (see Fig. 2b). The plasmid pTGOm encoded the same promoter as pTGO, and the TGase ORF was optimized according to the codon preference of S. lividans (see Fig. 3). The recombinant S. lividans TK24 that expressed pTGO or pTGOm was inoculated into 30 mL of medium (which contained 50 μg/mL apramycine) and cultured at 30 °C and 200 rpm for 3 days
Primers used in this study
| Primer | Sequence (5′–3′) |
|---|---|
| TGUF | CGGGGTACCCCGTAGCGGGTGGCGAAGAT |
| TGDR | GGAAGATCTCACGAGGACACCGAACGACTG |
| TG100F | TTCGAGCTCGGTACCCACCCCGCTGAATGGGACTCTTCGT |
| TG200F | TTCGAGCTCGGTACCCCAGGAGCAGGGGAACGCTGC |
| TG300F | TTCGAGCTCGGTACCGACGTTGCCGGGGAGTTGGCGC |
| TG400F | TTCGAGCTCGGTACCCTCTCCCTGCGGTCGCCGTGACAG |
| TGQ1R | ACATGCATGCGACCTCAGCCGCGCTGTCCTGGGTC |
| TGQ2R | ACATGCATGCCCGCCACGAGGCGGAAGGAGATGC |
| TGQ3R | ACATGCATGCGCGTGGCCGTCGCCGGTCATGACCTGGTG |
| TGQ4R | ACATGCATGCGGCGGCACCGGTGCCTCGCTACATC |
| TGQ5R | ACATGCATGCGGGCCCGGTCCGGGGGCCGAGG |
| TGQ6R | ACATGCATGCGGGAGTGCATGAAGTCGGTGTC |
| TGQ7R | ACATGCATGCACAGCGGCGGTCGCCGGGGCGACGG |
| TGQ8R | ACATGCATGCGCCTCGCCGCGAACCGCACGCCAGG |
| TGQ9R | ACATGCATGCGGCAGGTCGGGAGCGCCTGTC |