Chem Shift validation: AVS_anomalous, AVS_full
BMRB Entry DOI: doi:10.13018/BMR27202
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Citation: Galiakhmetov, Azamat; Kovrigina, Elizaveta; Xia, Chuanwu; Kim, Jung-Ja; Kovrigin, Evgueni. "Application of methyl-TROSY to a large paramagnetic membrane protein without perdeuteration: 13C-MMTS-labeled NADPH-cytochrome P450 oxidoreductase" J. Biomol. NMR 70, 21-31 (2018).
PubMed: 29168021
Assembly members:
oxidoreductase, polymer, 622 residues, Formula weight is not available
Natural source: Common Name: Rat Taxonomy ID: 10116 Superkingdom: Eukaryota Kingdom: Metazoa Genus/species: Rattus norvegicus
Experimental source: Production method: recombinant technology Host organism: Escherichia coli Vector: pOR263
| Data type | Count |
| 13C chemical shifts | 6 |
| 1H chemical shifts | 6 |
| Entity Assembly ID | Entity Name | Entity ID |
|---|---|---|
| 1 | POR | 1 |
Entity 1, POR 622 residues - Formula weight is not available
| 1 | ILE | GLN | THR | THR | ALA | PRO | PRO | VAL | LYS | GLU | ||||
| 2 | SER | SER | PHE | VAL | GLU | LYS | MET | LYS | LYS | THR | ||||
| 3 | GLY | ARG | ASN | ILE | ILE | VAL | PHE | TYR | GLY | SER | ||||
| 4 | GLN | THR | GLY | THR | ALA | GLU | GLU | PHE | ALA | ASN | ||||
| 5 | ARG | LEU | SER | LYS | ASP | ALA | HIS | ARG | TYR | GLY | ||||
| 6 | MET | ARG | GLY | MET | SER | ALA | ASP | PRO | GLU | GLU | ||||
| 7 | TYR | ASP | LEU | ALA | ASP | LEU | SER | SER | LEU | PRO | ||||
| 8 | GLU | ILE | ASP | LYS | SER | LEU | VAL | VAL | PHE | CYS | ||||
| 9 | MET | ALA | THR | TYR | GLY | GLU | GLY | ASP | PRO | THR | ||||
| 10 | ASP | ASN | ALA | GLN | ASP | PHE | TYR | ASP | TRP | LEU | ||||
| 11 | GLN | GLU | THR | ASP | VAL | ASP | LEU | THR | GLY | VAL | ||||
| 12 | LYS | PHE | ALA | VAL | PHE | GLY | LEU | GLY | ASN | LYS | ||||
| 13 | THR | TYR | GLU | HIS | PHE | ASN | ALA | MET | GLY | LYS | ||||
| 14 | TYR | VAL | ASP | GLN | ARG | LEU | GLU | GLN | LEU | GLY | ||||
| 15 | ALA | GLN | ARG | ILE | PHE | GLU | LEU | GLY | LEU | GLY | ||||
| 16 | ASP | ASP | ASP | GLY | ASN | LEU | GLU | GLU | ASP | PHE | ||||
| 17 | ILE | THR | TRP | ARG | GLU | GLN | PHE | TRP | PRO | ALA | ||||
| 18 | VAL | CYS | GLU | PHE | PHE | GLY | VAL | GLU | ALA | THR | ||||
| 19 | GLY | GLU | GLU | SER | SER | ILE | ARG | GLN | TYR | GLU | ||||
| 20 | LEU | VAL | VAL | HIS | GLU | ASP | MET | ASP | VAL | ALA | ||||
| 21 | LYS | VAL | TYR | THR | GLY | GLU | MET | GLY | ARG | LEU | ||||
| 22 | LYS | SER | TYR | GLU | ASN | GLN | LYS | PRO | PRO | PHE | ||||
| 23 | ASP | ALA | LYS | ASN | PRO | PHE | LEU | ALA | ALA | VAL | ||||
| 24 | THR | ALA | ASN | ARG | LYS | LEU | ASN | GLN | GLY | THR | ||||
| 25 | GLU | ARG | HIS | LEU | MET | HIS | LEU | GLU | LEU | ASP | ||||
| 26 | ILE | SER | ASP | SER | LYS | ILE | ARG | TYR | GLU | SER | ||||
| 27 | GLY | ASP | HIS | VAL | ALA | VAL | TYR | PRO | ALA | ASN | ||||
| 28 | ASP | SER | ALA | LEU | VAL | ASN | GLN | ILE | GLY | GLU | ||||
| 29 | ILE | LEU | GLY | ALA | ASP | LEU | ASP | VAL | ILE | MET | ||||
| 30 | SER | LEU | ASN | ASN | LEU | ASP | GLU | GLU | SER | ASN | ||||
| 31 | LYS | LYS | HIS | PRO | PHE | PRO | CYS | PRO | THR | THR | ||||
| 32 | TYR | ARG | THR | ALA | LEU | THR | TYR | TYR | LEU | ASP | ||||
| 33 | ILE | THR | ASN | PRO | PRO | ARG | THR | ASN | VAL | LEU | ||||
| 34 | TYR | GLU | LEU | ALA | GLN | TYR | ALA | SER | GLU | PRO | ||||
| 35 | SER | GLU | GLN | GLU | HIS | LEU | HIS | LYS | MET | ALA | ||||
| 36 | SER | SER | SER | GLY | GLU | GLY | LYS | GLU | LEU | TYR | ||||
| 37 | LEU | SER | TRP | VAL | VAL | GLU | ALA | ARG | ARG | HIS | ||||
| 38 | ILE | LEU | ALA | ILE | LEU | GLN | ASP | TYR | PRO | SER | ||||
| 39 | LEU | ARG | PRO | PRO | ILE | ASP | HIS | LEU | CYS | GLU | ||||
| 40 | LEU | LEU | PRO | ARG | LEU | GLN | ALA | ARG | TYR | TYR | ||||
| 41 | SER | ILE | ALA | SER | SER | SER | LYS | VAL | HIS | PRO | ||||
| 42 | ASN | SER | VAL | HIS | ILE | CYS | ALA | VAL | ALA | VAL | ||||
| 43 | GLU | TYR | GLU | ALA | LYS | SER | GLY | ARG | VAL | ASN | ||||
| 44 | LYS | GLY | VAL | ALA | THR | SER | TRP | LEU | ARG | ALA | ||||
| 45 | LYS | GLU | PRO | ALA | GLY | GLU | ASN | GLY | GLY | ARG | ||||
| 46 | ALA | LEU | VAL | PRO | MET | PHE | VAL | ARG | LYS | SER | ||||
| 47 | GLN | PHE | ARG | LEU | PRO | PHE | LYS | SER | THR | THR | ||||
| 48 | PRO | VAL | ILE | MET | VAL | GLY | PRO | GLY | THR | GLY | ||||
| 49 | ILE | ALA | PRO | PHE | MET | GLY | PHE | ILE | GLN | GLU | ||||
| 50 | ARG | ALA | TRP | LEU | ARG | GLU | GLN | GLY | LYS | GLU | ||||
| 51 | VAL | GLY | GLU | THR | LEU | LEU | TYR | TYR | GLY | CYS | ||||
| 52 | ARG | ARG | SER | ASP | GLU | ASP | TYR | LEU | TYR | ARG | ||||
| 53 | GLU | GLU | LEU | ALA | ARG | PHE | HIS | LYS | ASP | GLY | ||||
| 54 | ALA | LEU | THR | GLN | LEU | ASN | VAL | ALA | PHE | SER | ||||
| 55 | ARG | GLU | GLN | ALA | HIS | LYS | VAL | TYR | VAL | GLN | ||||
| 56 | HIS | LEU | LEU | LYS | ARG | ASP | ARG | GLU | HIS | LEU | ||||
| 57 | TRP | LYS | LEU | ILE | HIS | GLU | GLY | GLY | ALA | HIS | ||||
| 58 | ILE | TYR | VAL | CYS | GLY | ASP | ALA | ARG | ASN | MET | ||||
| 59 | ALA | LYS | ASP | VAL | GLN | ASN | THR | PHE | TYR | ASP | ||||
| 60 | ILE | VAL | ALA | GLU | PHE | GLY | PRO | MET | GLU | HIS | ||||
| 61 | THR | GLN | ALA | VAL | ASP | TYR | VAL | LYS | LYS | LEU | ||||
| 62 | MET | THR | LYS | GLY | ARG | TYR | SER | LEU | ASP | VAL | ||||
| 63 | TRP | SER |
sample_1: oxidoreductase mM; sodium phosphate 1 mM; potassium phosphate 10 mM; sodium chloride 137 mM; potassium chloride 2.7 mM
methylthiocysteine: ionic strength: 100 mM; pH: 7.4; pressure: 1 atm; temperature: 293 K
| Name | Sample | Sample state | Sample conditions |
|---|---|---|---|
| 2D 1H-13C HMQC | sample_1 | isotropic | methylthiocysteine |
SPARKY, Goddard - chemical shift assignment