BMRB Entry 4834
Chem Shift validation: AVS_anomalous, AVS_full, LACS
BMRB Entry DOI: doi:10.13018/BMR4834
NMR-STAR file interactive viewer.
NMR-STAR v3 text file.
NMR-STAR v2.1 text file (deprecated)
XML gzip file.
RDF gzip file.
All files associated with the entry
Title: Backbone (1H, 15N, 13C) Resonance Assignments of a 21 kDa construct of S. aureus Peptide Deformylase
Deposition date: 2000-09-18 Original release date: 2001-02-14
Authors: Scahill, Terrence; Kloosterman, David; Cialdella, Joyce; Deibel, Martin; Marshall, Vincent; Yem, Anthony
Citation: Scahill, Terrence; Kloosterman, David; Cialdella, Joyce; Deibel, Martin; Marshall, Vincent; Yem, Anthony. "Letter to the Editor: Backbone (1H, 15N, 13C) resonance assignments of a 21 kDa construct of S. aureus peptide deformylase" J. Biomol. NMR 19, 81-82 (2001).
Assembly members:
Staphylococcal aureus peptide deformylase, polymer, 189 residues, Formula weight is not available
ZN, non-polymer, 65.409 Da.
Natural source: Common Name: not available Taxonomy ID: 1280 Superkingdom: Bacteria Kingdom: not available Genus/species: Staphylococcus aureus
Experimental source: Production method: recombinant technology
Entity Sequences (FASTA):
Staphylococcal aureus peptide deformylase: MLTMKDIIRDGHPTLRQKAA
ELELPLTKEEKETLIAMREF
LVNSQDEEIAKRYGLRSGVG
LAAPQINISKRMIAVLIPDD
GSGKSYDYMLVNPKIVSHSV
QEAYLPTGEGCLSVDDNVAG
LVHRHNRITIKAKDIEGNDI
QLRLKGYPAIVFQHEIDHLN
GVMFYDHIDKDHPLQPHTDA
VEVHHHHHH
- assigned_chemical_shifts
Data type | Count |
1H chemical shifts | 632 |
13C chemical shifts | 509 |
15N chemical shifts | 166 |
Additional metadata:
Related Database Links:
PDB | 1LM4 1LQW 1Q1Y 2AI9 3U7K 3U7L 3U7M 3U7N |
DBJ | BAB42188 BAB57253 BAB94839 BAF67229 BAF77966 |
EMBL | CAG40067 CAG42800 CAI80645 CAQ49513 CBI48965 |
GB | AAG02249 AAW37980 ABD21929 ABD30158 ABQ48951 |
REF | NP_371615 NP_374210 NP_645791 WP_000957034 WP_000957036 |
SP | P68825 P68826 P99077 Q5HGZ3 Q6GAC3 |
Download simulated HSQC data in one of the following formats:
CSV: Backbone
or all simulated shifts
SPARKY: Backbone
or all simulated shifts