| Literature DB >> 16285881 |
Petra Adam1, Markus Gütlich, Hartmut Oschkinat, Adelbert Bacher, Wolfgang Eisenreich.
Abstract
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Year: 2005 PMID: 16285881 PMCID: PMC1310531 DOI: 10.1186/1471-2091-6-24
Source DB: PubMed Journal: BMC Biochem ISSN: 1471-2091 Impact factor: 4.059
Figure 113C NMR signals of cytidine from S. frugiperda cells grown with a 1:99 mixture of [U-13C6]glucose and unlabelled glucose added to SF-900 II medium. 13C-Coupling patterns are indicated.
Isotopolog compositions of nucleosides from S. frugiperda cells grown with a mixture of [U-13C6]glucose and natural abundance glucose.
| Cytidine ( | 2 | 159.7 | 1.1 | ||
| 4 | 168.4 | 55.5 (5) | 1.3 | 7.3 (5) | |
| 5 | 98.9 | 55.3 (4) | 1.2 | 8.5 (4) | |
| 6 | 144.4 | 1.2 | |||
| 1' | 92.2 | 42.7 (2') | 1.6 | 22.1 (2') | |
| 2' | 76.6 | 42.5 (1') | 1.6 | 22.8 (1') | |
| 3' | 71.9 | 38.7 (4') | 1.5 | 25.3 (4') | |
| 4' | 86.4 | 38.7 (3'), 42.0 (5') | 1.6 | 23.7 (3', 5'), 2.8 (5') | |
| 5' | 63.5 | 42.0 (4') | 1.5 | 27.4 (4') | |
| Adenosine ( | 2 | 154.7 | 1.1 | ||
| 4 | 150.6 | n.d. | |||
| 5 | 121.3 | n.d. | |||
| 6 | 157.8 | 2.7 | |||
| 8 | 142.7 | 1.1 | |||
| 1' | 90.4 | 42.7 (2') | 1.7 | 23.5 (2') | |
| 2' | 75.8 | 42.5 (1') | 1.8 | 22.8 (1') | |
| 3' | 72.7 | 38.5 (4') | 1.7 | 26.0 (4') | |
| 4' | 87.9 | 41.8 (5'), 38.3 (3') | 1.6 | 24.6 (3', 5'), 2.9 (5') | |
| 5' | 63.6 | 41.3 (4') | 1.7 | 25.9 (4') | |
| Guanosine ( | 6 | 156.4 | 1.3 | ||
| 2 | 153.8 | 1.1 | |||
| 4 | 150.1 | 1.1 | |||
| 5 | 115.7 | 1.0 | |||
| 8 | 135.6 | 1.2 | |||
| 1' | 86.5 | 42.9 (2') | 1.7 | 22.8 (2') | |
| 2' | 73.7 | 42.9 (1') | 1.7 | 22.3 (1') | |
| 3' | 70.2 | 38.4 (4') | 1.7 | 24.1 (4') | |
| 4' | 85.2 | 41.8 (5'), 38.0 (3') | 1.6 | 26.0 (3', 5'), 2.8 (5') | |
| 5' | 61.3 | 42.0 (4') | 1.7 | 26.5 (4') | |
aabsolute 13C abundance.
brelative fraction of satellite pairs in the global 13C NMR intensity of the index carbon atom. The coupling partners of the index carbon atom are indicated in parentheses.
Figure 2Isotopolog composition of 13C-labelled nucleosides from S. frugiperda cells grown with a 1:99 mixture of [U-13C6]glucose and unlabelled glucose added to SF-900 II medium. The filled dot represents a 13C1 isotopolog detected at an abundance well above the natural abundance contribution. Bold lines indicate isotopologs with adjacent 13C-labelled carbon atoms that were transferred from the same molecule of [U-13C6]glucose. The numbers give the molar enrichments of the indicated isotopologs.
Figure 3Average isotopolog composition of 13C-labelled ribose units in ribonucleosides from S. frugiperda cells grown with a 1:99 mixture of [U-13C6]glucose and unlabelled glucose added to SF-900 II medium. Bold lines indicate isotopologs with adjacent 13C-labelled carbon atoms that were transferred from the same molecule of [U-13C6]glucose. The numbers give the molar contributions of the indicated isotopologs.
Specific incorporation of proffered glucose into metabolites of S. frugiperda cells grown in SF-900 II medium.
| Ribose moiety | 40–45 |
| Pyrimidine base | 10–15 |
| Purine base | < 5 |
| Alanine | 45–50 |
| Glutamate/Glutamine (C-4/C-5) | 30 |
| Aspartate/Asparagine | 10–15 |
| Others | < 5 |
Figure 41H NMR signal of H-6 of cytidine from S. frugiperda cells grown with a 1:99 mixture of [U-13C6]glucose and unlabelled glucose added to SF-900 II medium. The amplitude of the satellites is 50-fold enlarged by comparison with the central signal. The coupling pattern is indicated.
Isotopolog compositions of amino acids from S. frugiperda cells grown in a mixture of [U-13C6]glucose and natural abundance glucose.
| Alanine ( | 1 | 175.7 | n.d. | n.d. | n.d. |
| 2 | 51.4 | 59.6 (1), 34.9 (3) | 1.8 | 3.8 (3), 22.2 (1, 3) | |
| 3 | 18.4 | 35.1 (2) | 1.7 | 26.5 (2) | |
| Aspartate ( | 1 | 182.9 | n.d. | n.d. | n.d. |
| 2 | 61.3 | 60.4 (1) | 1.8 | 7.4 (1) | |
| 3 | 45.9 | 55.3 (4) | 1.9 | 7.2 (4) | |
| 4 | 185.1 | 55.7 (3) | 1.8 | 7.6 (3) | |
| Glutamate ( | 1 | 176.1 | 1.3 | ||
| 2 | 56.2 | 1.0 | |||
| 3 | 27.9 | 1.1 | |||
| 4 | 32.5 | 55.1 (5) | 1.8 | 17.1 (5) | |
| 5 | 179.6 | 55.1 (4) | 1.7 | 17.2 (4) | |
aabsolute 13C abundance.
brelative fraction of satellite pairs in the global 13C NMR intensity of the index carbon atom. The coupling partners of the index carbon atom are indicated in parentheses.
n.d., not determined due to poor signal quality.
Figure 5Isotopolog composition of 13C-labelled amino acids from S. frugiperda cells grown with a 1:99 mixture of [U-13C6]glucose and unlabelled glucose added to SF-900 II medium. Bold lines indicate isotopologs with adjacent 13C-labelled carbon atoms that were transferred from the same molecule of [U-13C6]glucose. The numbers give the molar contributions of the indicated isotopologs.
Approximate natural abundance of selected ribose isotopologs carrying 13C.
| [1-13C1] | 1.1 |
| [2-13C1] | 1.1 |
| [3-13C1] | 1.1 |
| [1,2-13C2] | 0.012 |
| [4,5-13C2] | 0.012 |
| [1,2,3-13C3] | 0.00013 |
| [3,4,5-13C3] | 0.00013 |
| [U-13C5] | 0.000000018 |
Figure 6Metabolic processes involved in pentose/pentulose formation from [U-13C6]glucose in a large excess of unlabelled glucose (A), via the pentose phosphate cycle and (B), via glycolytic cycling followed by the pentose phosphate cycle. (C), Metabolic processes involved in the formation of the detected aspartate isotopologs. Bold lines connect 13C-atoms in a given molecular species.
Figure 7Metabolic network of S. frugiperda cells grown in SF-900 II medium.