| Literature DB >> 32831572 |
Stela Križanović1, Damir Stanzer2, Jasna Mrvčić2, Karla Hanousek-Čiča2, Elizabeta Kralj3, Gordana Čanadi Jurešić4.
Abstract
RESEARCHEntities:
Keywords: S-adenosyl-l-methionine production; Sheffersomyces stipitis; lipid composition; lipid metabolism scheme
Year: 2020 PMID: 32831572 PMCID: PMC7416122 DOI: 10.17113/ftb.58.02.20.6540
Source DB: PubMed Journal: Food Technol Biotechnol ISSN: 1330-9862 Impact factor: 3.918
Fig. 1Changes of: a) Sheffersomyces stipitis M12 biomass concentration, S-adenosyl-l-methionine (SAM) mass fraction in the M12 biomass, and glycerol (Gly) consumption during cultivation in modified O-medium with 6 g/L d,l-methionine (blank symbols) and pulse supplement 6 g/L d,l-methionine (P) at the 27th hour of cultivation (full symbols) in a laboratory bioreactor (pH=6 and temperature 30 °C), b) Sheffersomyces stipitis (wild type) biomass concentration, SAM content in the biomass Sheffersomyces stipitis (wild type), and glycerol consumption during cultivation in modified O-medium with 6 g/L d,l-methionine and pulse supplementation of 6 g/L d,l-methionine at the 15th hour of cultivation in a laboratory bioreactor (pH=6 and temperature 30 °C)
Total lipids and lipid fractions (extracted from the cells harvested at the beginning of stationary phase) and separated by solid phase extraction in Sheffersomyces stipitis wild type and M12 yeast strain grown on glycerol as the main carbon source
| ( | Wild type | |||||||
|---|---|---|---|---|---|---|---|---|
| Neutral lipids | Polar lipids | FFA | ||||||
| 5.56±0.03 | 75.0±1.9 | 23.7±0.6 | 1.3±1.8 | |||||
| SE | TAG | Sterols | ||||||
| 13.9±1.2 | 35.0±1.4 | 23.2±2.0 | ||||||
| ( | M12 | |||||||
| Neutral lipids | Polar lipids | FFA | ||||||
| 6.0±0.5 | (79.9±2.4)* (15.5±0.9)* (4.6±1.1)* | |||||||
| SE | TAG | Sterols | ||||||
| (24.5±0.9)* | 33.0±2.0 | (19.5±0.5)* | ||||||
Results are expressed as mean value±standard deviation (S.D.) and represent the mean value of at least three independent experiments performed in duplicate; *significantly different from the wild type (Mann-Whitney U test, p<0.05). SE=steryl esters, TAG=triacylglycerols, FFA=free fatty acids
Fig. 2Network of actual biochemical pathways constructed for S. stipitis wild and M12 type grown on glycerol. The network is mainly constructed on the base and data analysis given by Prielhofer et al. () for P. pastoris grown on excess of glycerol. The data from Ivashov et al. (, ), Klug (), Tae Myoung et al. (19), Wei et al. () and Zhang et al. () were also implemented in this network. Metabolites: AAD=acetaldehyde, ACO=aconitate, AKG=α-ketoglutarate, CIT=citrate, DAG=diacylglycerols, 1-acyl DHAP=1-acyl dihydroxyacetone phosphate, DHAP=dihydroxyacetone phosphate, F-1,6-biP=fructose 1,6-bisphosphate, Fru-6-P=fructose 6-phosphate, FFA=free fatty acids, FUM=fumarate, G-3-P=glycerol 3-phosphate, GA-3-P=glyceraldehyde 3-phosphate, Glu-6-P=glucose 6-phosphate, GLYO=glyoxylate, ICIT=isocitrate, lyso-PA=lysophosphatidic acid, MAG=monoacylglycerols, MAL=malate, OAA=oxaloacetate, 1,3-bPG=1,3-bisphosphoglycerate, 2-P-G=2-phosphoglycerate, 3-P-G=3-phosphoglycerate, PEP=phosphoenolpyruvate, PPP=pentose phosphate pathway, PUFA=polyunsaturated fatty acids, PYR=pyruvate, SUC=succinate, SUC-CoA=succinyl-coenzyme A, TAG=triacylglycerols. Enzymes: ACO1/2=aconitase, ACS1=acetyl-coA synthetase, ALD4=mitochondrial aldehyde dehydrogenase, ARE2=acyl-CoA:sterol acyltransferase, CDC19=pyruvate kinase, CDS1=phosphatidate cytidylyltransferase, CIT1=citrate synthase, DAL7=malate synthase, DGA1=diacylglycerol acyltransferase, DPP1=diacylglycerol pyrophosphate (DGPP) phosphatase, ENO1=enolase I, ERG PROTEINS=enzymes involved in ergosterol synthesis, FAA1=long chain fatty acyl-CoA synthetase, FAA2=medium chain fatty acyl-CoA synthetase, FAD3=ω-3 desaturase, FAD12=Δ12-fatty acid desaturase, FAT1=very long chain fatty acyl-CoA synthetase and long chain fatty acid transportase, FBA1-1/1-2=fructose 1,6-bisphosphate aldolase, FBP1=fructose-1,6-bisphosphatase, FOX2=multifunctional enzyme of the peroxisomal fatty acid β-oxidation pathway (it has 3-hydroxyacyl-CoA dehydrogenase and enoyl-CoA hydratase activities), FUM1=fumarase, GPD1=glycerol-3-phosphate dehydrogenase, GPM1/3=phosphoglycerate mutase, GPT2=glycerol 3-phosphate/dihydroxyacetone phosphate dual substrate-specific sn-1 acyltransferase, GUT1=glycerol kinase, GUT2=glycerol-3-phosphate dehydrogenase, HXK1=hexokinase, ICL1=isocitrate lyase, IDH1/2=isocitrate dehydrogenase, KGD1=α-ketoglutarate dehydrogenase complex, KGD2=dihydrolipoyl transsuccinylase, LSC1=succinyl-CoA ligase, LRO1=diacylglycerol acyltransferase, MAE1=mitochondrial malic enzyme, MDH1=mitochondrial malate dehydrogenase, MDH3=malate dehydrogenase, OLE1=Δ9-fatty acid desaturase, PAH1=Mg2+-dependent phosphatidate (PA) phosphatase, PCK1=phosphoenolpyruvate carboxykinase, PDA1=E1 α subunit of the pyruvate dehydrogenase (PDH) complex, PFK1/2=phosphofructokinase, PGI1=phosphoglucose isomerase, PGK1=3-phosphoglycerate kinase, POT1=3-ketoacyl-CoA thiolase, POX1=Fatty-acyl coenzyme A oxidase, PYC2=pyruvate carboxylase, SCT1=glycerol 3-phosphate/dihydroxyacetone phosphate dual substrate-specific sn-1 acyltransferase, SDH 2/4=succinate dehydrogenase, SLC1=1-acyl-sn-glycerol-3-phosphate acyltransferase, TAM41=mitochondrial phosphatidate cytidylyltransferase (CDP-DAG synthase), TGL1=steryl ester hydrolase, TGL3/4=triacylglycerol lipase, TPI1=triose phosphate isomerase, TDH3=glyceraldehyde-3-phosphate dehydrogenase, YJU3=monoglyceride lipase (MGL)
Main fatty acids (FA, expressed as mass fraction of total identified fatty acids) of the total, neutral and polar lipids and free fatty acids in Sheffersomyces stipitis wild type and M12 yeast strain and the main features of the composition
| Fatty acid | ||||||||
|---|---|---|---|---|---|---|---|---|
| Total lipids | Neutral lipids | Polar lipids | Free fatty acids | |||||
| Wild type | M12 strain | Wild type | M12 strain | Wild type | M12 strain | Wild type | M12 strain | |
| C 15:0 | n.d. | n.d. | 2.6±0.6 | 1.9±0.6 | n.d. | (3.1±1.0)* | 4.9±0.5 | (0.03±0.05)* |
| C 16:0 | 14.5±0.4 | 13.6±0.5 | 20.9±2.9 | (16.0±0.6)* | 10.8±0.3 | (17.3±1.2)* | 45.4±2.5 | (22.0±1.4)* |
| C 16:1 | 3.0±0.3 | (2.4±0.1)* | 2.4±0.3 | 1.6±0.7 | 3.0±0.3 | (2.3±0.3)* | 6.5±0.4 | (5.0±0.7)* |
| C 18:0 | 3.0±0.5 | (5.4±0.2)* | 5.0±0.4 | (7.7±0.9)* | 2.1±0.3 | (4.4±0.5)* | 9.2±1.4 | (5.0±0.9)* |
| C 18:1 | 27.5±0.8 | (38.4±1.1)* | 26.6±2.2 | (44.4±1.6)* | 25.4±0.4 | (31.4±0.7)* | 30.5±3.5 | (40.4±1.6)* |
| C 18:2 | 48.3±1.1 | (37.0±1.1)* | 38.6±2.6 | (25.7±2.1)* | 53.2±1.1 | (32.1±1.7)* | 2.1±0.5 | (25.9±0.4)* |
| C 18:3 | 3.2±0.2 | (2.8±0.1)* | 1.9±0.6 | (1.1±0.3)* | 4.7±0.1 | (2.1±0.3)* | 0.1±0.1 | (1.4±0.3)* |
| C 20:1 | 0.23±0.05 | 0.21±0.02 | 1.1±0.4 | 0.6±0.2 | 1.1±0.4 | 0.6±0.2 | 0.8±0.0 | n.d.* |
| c 22:3 | 0.08±0.03 | 0.08±0.03 | n.d. | (0.4±0.2)* | 0.3±0.1 | (3.2±0.9)* | n.d. | n.d. |
| c 22:4 | 0.10±0.02 | 0.09±0.02 | 0.7±0.1 | 0.6±0.2 | 0.4±0.1 | (3.5±1.1)* | 0.4±0.2 | n.d.* |
| UFA | 82.4±0.7 | (81.0±0.3)* | 71.3±4.0 | 74.5±1.7 | 88.1±0.7 | (75.2±1.0)* | 40.4±0.6 | (72.7±0.8)* |
| mono- | 30.7±0.3 | (41.0±0.2)* | 30.1±2.2 | (46.6±1.6)* | 29.5±0.2 | (34.3±0.6)* | 37.9±0.2 | (45.4±0.6)* |
| poli- | 51.7±0.9 | (40.0±0.8)* | 41.2±2.6 | (27.8±2.1)* | 58.6±1.0 | (40.9±1.2)* | 2.6±0.3 | (27.3±1.2)* |
| C16 | 17.5±0.7 | (16.00±0.5)* | 23.3±0.7 | (17.6±0.5)* | 13.8±0.3 | (19.6±1.6)* | 51.9±0.2 | (27.0±1.4)* |
| C18 | 82.0±0.6 | (83.6±0.5)* | 72.1±2.1 | (78.9±0.6)* | 85.4±0.6 | (70.0±0.4)* | 42.0±0.7 | (72.7±1.3)* |
| SFA/UFA | 0.21±0.01 | (0.24±0.01)* | 0.41±0.09 | 0.35±0.03 | 0.15±0.01 | (0.33±0.02)* | 1.47±0.03 | (0.43±0.01)* |
| IU | 1.38±0.02 | (1.24±0.02)* | 1.17±0.09 | (1.06±0.01)* | 1.52±0.01 | (1.35±0.03)* | 0.44±0.01 | (1.02±0.03)* |
Mean value±S.D. of at least three independent experiments performed in duplicate was calculated on the basis of peak areas; *significantly different from the wild type (Mann-Whitney U test, p<0.05), n.d.=not detected
Main fatty acids (FA, expressed as mass fraction of total identified fatty acids) of the triacylglycerols and sterol esters in Sheffersomyces stipitis wild type and M12 strain and the main features of the composition
| Fatty acid | ||||
|---|---|---|---|---|
| Triacylglycerols | Sterol esters | |||
| Wild type | M12 strain | Wild type | M12 strain | |
| C 16:0 | 14.3±1.0 | 13.7±0.8 | 7.1±0.8 | (11.4±1.1)* |
| C 16:1 | 2.2±0.2 | (1.7±0.2)* | 3.3±0.2 | (2.70±0.05)* |
| C 18:0 | 8.0±0.6 | (11.2±1.4)* | 1.6±0.2 | 1.8±0.6 |
| C 18:1 | 35.9±0.6 | (46.1±1.5)* | 44.0±1.7 | 45.9±0.8 |
| C 18:2 | 36.6±0.9 | (25.1±1.7)* | 41.5±1.1 | (35.6±1.1)* |
| C 18:3 | 1.8±0.1 | (1.3±0.3)* | 1.3±0.2 | 1.4±0.3 |
| C 20:0 | 0.5±0.2 | 0.3±0.2 | n.d. | n.d. |
| C 20:1 | 0.2±0.1 | 0.4±0.3 | 0.5±0.1 | 0.48±0.09 |
| UFA | 76.9±0.9 | (74.6±0.7)* | 90.6±1.1 | (86.1±0.8)* |
| mono- | 38.4±0.3 | (48.2±0.7)* | 47.8±1.3 | 49.1±1.6 |
| poli- | 38.5±0.9 | (26.4±0.8)* | 42.8±1.00 | (37.0±2.1)* |
| C16 | 16.5±0.8 | 15.4±0.3 | 10.4±0.9 | (14.1±1.1)* |
| C18 | 82.4±0.8 | (83.7±0.5)* | (88.4±0.7) | (82.9±1.4)* |
| SFA/UFA | 0.30±0.02 | (0.34±0.01)* | 0.10±0.01 | (0.17±0.01)* |
| IU | 1.18±0.02 | (1.03±0.02)* | 1.36±0.02 | (1.25±0.01)* |
Mean value±S.D. of at least three independent experiments performed in duplicate was calculated on the basis of peak areas; the results represent the mean value; *significantly different from the wild type (Mann-Whitney U test, p<0.05)