Projekt per år
Sammanfattning
Bio-based 5-hydroxymethylfurfural (HMF) serves as an important platform for several chemicals, among which 2,5-furan dicarboxylic acid (FDCA) has attracted considerable interest as a monomer for the production of polyethylene furanoate (PEF), a potential alternative for fossil-based polyethylene terephthalate (PET). This study is based on the HMF oxidizing activity shown by Mycobacterium sp. MS 1601 cells and investigation of the enzyme catalysing the oxidation. The Mycobacterium whole cells oxidized the HMF to FDCA (60% yield) and hydroxymethyl furan carboxylic acid (HMFCA). A gene encoding a novel bacterial aryl alcohol oxidase, hereinafter MycspAAO, was identified in the genome and was cloned and expressed in Escherichia coli Bl21 (DE3). The purified MycspAAO displayed activity against several alcohols and aldehydes; 3,5 dimethoxy benzyl alcohol (veratryl alcohol) was the best substrate among those tested followed by HMF. 5-Hydroxymethylfurfural was converted to 5-formyl-2-furoic acid (FFCA) via diformyl furan (DFF) with optimal activity at pH 8 and 30–40°C. FDCA formation was observed during long reaction time with low HMF concentration. Mutagenesis of several amino acids shaping the active site and evaluation of the variants showed Y444F to have around 3-fold higher kcat/Km and ~1.7-fold lower Km with HMF.
Originalspråk | engelska |
---|---|
Sidor (från-till) | 2176-2190 |
Tidskrift | Microbial Biotechnology |
Volym | 15 |
Nummer | 8 |
Tidigt onlinedatum | 2022 |
DOI | |
Status | Published - 2022 |
Bibliografisk information
Publisher Copyright:© 2022 The Authors. Microbial Biotechnology published by Society for Applied Microbiology and John Wiley & Sons Ltd.
Ämnesklassifikation (UKÄ)
- Biokemi och molekylärbiologi
- Industriell bioteknik
Fingeravtryck
Utforska forskningsämnen för ”Oxidation of 5-hydroxymethylfurfural with a novel aryl alcohol oxidase from Mycobacterium sp. MS1601”. Tillsammans bildar de ett unikt fingeravtryck.Projekt
- 1 Aktiva
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STEPS Phase 2: Sutainable Plastics and Transition Pathways - Phase 2
Hatti-Kaul, R., Egan, N., Generosi, J., Hulteberg, C., Bauer, F., Zhang, B., Englund Örn, O., Sayed Ali Sayed, M., Hagman, A., Leiva Eriksson, N., Pyo, S., Madsen, S., Palm, E., Nilsson, L. J., Ericsson, K., Stripple, J., Holmberg, K., Liu, J., Molina-Besch, K., Mankar, S., Warlin, N., Nguyen, T., Nordin, A., Dash, S., Jannasch, P., Karlsson, H., Abdelaziz, O., Garcia Gonzalez, N., Peric, S., Valsange, N. & Rehnberg, N.
MISTRA, Swedish foundation for strategic environmental research
2020/09/01 → 2024/08/31
Projekt: Forskning