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Engineering an Alcohol-Forming Fatty Acyl-CoA Reductase for Aldehyde and Hydrocarbon Biosynthesis in

Front Bioeng Biotechnol. 2020; 
Jee Loon Foo, Bahareh Haji Rasouliha, Adelia Vicanatalita Susanto, Susanna Su Jan Leong, Matthew Wook Chang
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Gene Synthesis … cADO from Synechococcus elongatus PCC 7942 (NCBI Protein ID: WP_011378104.1) were obtained through gene synthesis (Genscript, China) and … Generation of BYΔ6 derivatives with multi-gene deletion was mediated by an adapted CRISPR/Cas9 system (Jakociunas et al … Get A Quote

摘要

Aldehydes are a class of highly versatile chemicals that can undergo a wide range of chemical reactions and are in high demand as starting materials for chemical manufacturing. Biologically, fatty aldehydes can be produced from fatty acyl-CoA by the action of fatty acyl-CoA reductases. The aldehydes produced can be further converted enzymatically to other valuable derivatives. Thus, metabolic engineering of microorganisms for biosynthesizing aldehydes and their derivatives could provide an economical and sustainable platform for key aldehyde precursor production and subsequent conversion to various value-added chemicals. is an excellent host for this purpose because it is a robust organism that has been used e... More

关键词

aldehydes, biofuels, de novo biosynthesis, metabolic engineering, protein engineering, synthetic biology