| Literature DB >> 28149324 |
Zhiguo Liu1, Tolutola Oyetunde2, Whitney D Hollinshead2, Anna Hermanns1,3, Yinjie J Tang2, Wei Liao1, Yan Liu1.
Abstract
BACKGROUND: C1 substrates (such as formate and methanol) are promising feedstock for biochemical/biofuel production. Numerous studies have been focusing on engineering heterologous pathways to incorporate C1 substrates into biomass, while the engineered microbial hosts often demonstrate inferior fermentation performance due to substrate toxicity, metabolic burdens from engineered pathways, and poor enzyme activities. Alternatively, exploring native C1 pathways in non-model microbes could be a better solution to address these challenges.Entities:
Keywords: 13C; Fatty acids; Flux balance analysis; NAD(P)H; One-carbon metabolic pathway
Year: 2017 PMID: 28149324 PMCID: PMC5267366 DOI: 10.1186/s13068-017-0708-1
Source DB: PubMed Journal: Biotechnol Biofuels ISSN: 1754-6834 Impact factor: 6.040
Fig. 1Simplified pathways of carbon and energy metabolism during U. isabellina culture on glucose and formate. a Formate metabolism. b Glucose metabolism
Fig. 2Contribution of formate carbon to amino acids in proteinogenic amino acids of Umbelopsis Isabellina with different carbon sources. Only amino acids with significant labeling pattern are displayed. Data are average of two replicates with standard error. a 13C-Formate as sole carbon source (yeast extract (YE) present in medium); b 13C-Formate + Glucose
U. isabellina growth on the media with formate and glucose as individual carbon sources
| Biomass concentration (g L−1) | |||
|---|---|---|---|
| Culture time (h) | 0 | 48 | 96 |
| Formate medium | 0.31 ± 0.03 | 0.58 ± 0.04 | 0.58 ± 0.08 |
| Glucose medium | 0.21 ± 0.02 | 3.67 ± 0.43 | 7.58 ± 0.28 |
Data are average of three replicates with standard deviation
Fig. 3Kinetics of fermentor culture using 13C-formate and glucose as the carbon sources. Data are average of two replicates with standard error. a Growth and substrate consumption kinetics; b NADH level kinetics; c Mass isotopomer m + 1 fraction of proteinogenic amino acids for biomass collected at 12, 24, and 48 h. Fatty acid labeling estimated based on labeling of acetyl-CoA, which was determined from the first two carbons of leucine
Key enzymes relevant to formate pathways identified by blasting the U. isabellina genome
| Name | Reaction |
|---|---|
| NAD-dependent formate dehydrogenase (FDH, EC 1.2.1.1) | Formate + NAD+ ↔ CO2 + NADH + H+ |
| Formate tetrahydrofolate ligase (EC6.3.4.3) | ATP + formate + tetrahydrofolate ↔ ADP + phosphate + 10-formyltetrahydrofolate |
| Methenyltetrahydrofolate cyclohydrolase/dehydrogenase (EC3.5.4.9 and 1.5.1.5/15) | 5,10-Methenyltetrahydrofolate + H2O ↔ 10-formyltetrahydrofolate |
| Glycine dehydrogenase (EC1.4.1.10) | Glycine + H2O + NAD + ↔ glyoxylate + NH3 + NADH + H+ |
| Aminomethyltransferase (EC2.1.2.10) | Glycine + tetrahydrofolate + NAD+ ↔ 5,10-methylene-tetrahydrofolate + ammonium + CO2 + NADH |
| Dihydrolipoyl dehydrogenase (EC1.8.1.4) | Protein N6-(dihydrolipoyl)lysine + NAD+ ↔ protein N6-(lipoyl)lysine + NADH + H+ |
| Serine hydroxymethyltransferase (EC2.1.2.1) | 5,10-Methylenetetrahydrofolate + glycine + H2O ↔ tetrahydrofolate + |
| Serine deaminase (EC4.3.1.17) |
|
Fig. 4Enhancement of biomass and lipid accumulation by formate supplement. Data are average of two replicates with standard error. a Biomass yield; b biomass productivity; c lipid yield; d lipid productivity
Fig. 5Fatty acid composition profile shift with formate. Data are average of two replicates with standard error
Formate and glucose uptake rates and biomass accumulation
| Fermentation medium | Glucose uptake (mmol g−1 DCW h−1) | Formate uptake (mmol g−1 DCW h−1) | Biomass accumulation (mmol g−1 DCW h−1) | |||
|---|---|---|---|---|---|---|
| Glucose & formate medium | Glucose medium | Glucose & formate medium | Glucose medium | Glucose & formate medium | Glucose medium | |
| 3-L fermenter | 0.609 | 0.576 | 0.499 | – | 0.054 | 0.031 |
| 3-L fermenter | 0.505 | 0.577 | 0.816 | – | 0.027 | 0.037 |
| 0.7-L flask | 0.484 | 0.397 | 0.345 | – | 0.012 | 0.010 |
| 0.7-L flask | 0.026 | – | 0.117 | – | 0.017 | – |
Fig. 6Results of FBA analysis. Oxygen flux is limited to 2 mmol g−1 DCW h−1 and maintenance flux is 1 mmol ATP g−1 DCW h−1. a Effects of formate and glucose utilization on ATP production. b Effects of formate and glucose uptake rates on biomass growth. c Percentage of formate carbon to biomass. d Effects of formate and glucose uptake rates on biomass growth at low glucose utilization rates