| Literature DB >> 33937207 |
Wen-Yuan Zhu1,2, Kun Niu1,2, Peng Liu1,2, Yu-Hang Fan1,2, Zhi-Qiang Liu1,2, Yu-Guo Zheng1,2.
Abstract
L-methionine is an important natural amino acid with broad application prospects. A novel gene encoding the enzyme with the ability to catalyze O-succinyl-L-homoserine (OSH) to L-methionine was screened and characterized. The recombinant O-succinyl-L-homoserine sulfhydrylase from Thioalkalivibrio sulfidiphilus (tsOSHS) exhibited maximum activity at 35°C and pH 6.5. OSHS displayed an excellent thermostability with a half-life of 21.72 h at 30°C. Furthermore, the activity of OSHS increased 115% after Fe2+ added. L-methionine was obtained with a total yield reaching 42.63 g/L under the concentration of O-succinyl-L-homoserine 400 mM (87.6 g/L). These results indicated that OSHS is a potential candidate for applying in the large-scale bioproduction of L-methionine.Entities:
Keywords: L-methionine; O-succinyl-L-homoserine sulfhydrylase; biosyntheis; characterization; cysthionine γ-synthase
Year: 2021 PMID: 33937207 PMCID: PMC8080516 DOI: 10.3389/fchem.2021.672414
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Scheme 1The reaction equation catalyzed by OSHS in this study.
Identities and conversion rate of potential OSHS selected.
| WP_043220698.1 | 79% | 36.00% |
| WP_021218567.1 | 84% | 41.51% |
| WP_095206569.1 | 71% | 62.17% |
| WP_014852289.1 | 82% | 49.29% |
| WP_061239023.1 | 82% | 38.81% |
| PKM31047.1 | 75% | 32.75% |
| WP_069562939.1 | 72% | 45.31% |
| WP_038414333.1 | 81% | 47.21% |
| EIJ33950.1 | 48% | 5.08% |
| YP_009357725.1 | 46% | 0% |
| AEG51937.1 | 54% | 12.49% |
| AJY50471.1 | 45% | 9.42% |
Figure 1Alignment of the amino acid sequences. The origins and their GenBank NO.s are as follows: E. coli (KFF54031.1); Pseudomonas (WP_016715902.1); T. sulfidiphilus (WP_095206569.1).
Figure 2Phylogenetic analysis of OSHS and related enzymes.
Figure 3Effects of pH on enzyme activity of recombinant OSHS. The reactions were performed at 30°C for 10 min with 100 mM OSH and 5% (v/v) sodium methyl mercaptan. (A) pH optimization; (B) pH stability, the enzyme was incubated in buffers at pH 4.5–9.0 at 4°C for up to 10 h.
Figure 4Effects of temperature on enzyme activity of recombinant OSHS. The reactions were performed at pH 7.0 for 10 min with 100 mM OSH and 5% (v/v) sodium methyl mercaptan. (A) Temperature optimization; (B) temperature stability, the enzyme was incubated in buffer at pH 7.0 at 20–60°C for up to 25 h.
Figure 5Effects on the production of L-methionine at different coditions. (A) The production of L-methionine at various substrate concentrations with 30 mg/L tsOSHS. The reactions were performed in the PBS (pH6.5) at 30°C with 10 mM PLP and 10% (v/v) sodium methyl mercaptan; (B) The production of L-methionine at various OSHS concentrations with 400 mM OSH. The reactions were performed in the PBS (pH 6.5) at 30°C with 10 mM PLP and 10% (v/v) sodium methyl mercaptan; (C) The production of L-methionine at various PLP concentrations with 400 mM OSH and 100 mg/L tsOSHS and 5% (v/v) sodium methyl mercaptan. The reactions were performed in the PBS (pH 6.5) at 30°C.