Metabolic engineering strategies to enable microbial utilization of C1 feedstocks
Author(s) -
Wei Jiang,
David Hernández-Villamor,
Huadong Peng,
Jian Chen,
Long Liu,
Victoria S. Haritos,
Rodrigo LedesmaAmaro
Publication year - 2021
Publication title -
nature chemical biology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.412
H-Index - 216
eISSN - 1552-4469
pISSN - 1552-4450
DOI - 10.1038/s41589-021-00836-0
Subject(s) - biomanufacturing , metabolic engineering , synthetic biology , biochemical engineering , formate dehydrogenase , industrial biotechnology , computational biology , industrial microbiology , systems biology , heterologous , microbiology and biotechnology , biology , formate , engineering , biochemistry , fermentation , gene , catalysis
One-carbon (C1) substrates are preferred feedstocks for the biomanufacturing industry and have recently gained attention owing to their natural abundance, low production cost and availability as industrial by-products. However, native pathways to utilize these substrates are absent in most biotechnologically relevant microorganisms. Recent advances in synthetic biology, genome engineering and laboratory evolution are enabling the first steps towards the creation of synthetic C1-utilizing microorganisms. Here, we briefly review the native metabolism of methane, methanol, CO 2 , CO and formate, and how these C1-utilizing pathways can be engineered into heterologous hosts. In addition, this review analyses the potential, the challenges and the perspectives of C1-based biomanufacturing.
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