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Solution NMR structure of the C-terminal extension of two bacterial light, oxygen, voltage (LOV) photoreceptor proteins from Pseudomonas putida
Authors
Rani, R., Lecher, J., Hartmann, R., Krauss, U., Jaeger, K., Willbold, D.
Assembly
SB2Jalpha
Entity
1. SB2Jalpha (polymer, Thiol state: not present), 30 monomers, 3405.729 Da Detail

XTAQVFAEER VRELEAEVAE LRRQQGQAKH


Formula weight
3405.729 Da
Source organism
Pseudomonas putida
Exptl. method
solution NMR
Refine. method
SIMULATED ANNEALING
Data set
assigned_chemical_shifts
Chem. Shift Complete
Sequence coverage: 96.7 %, Completeness: 99.4 %, Completeness (bb): 100.0 % Detail

Polymer type: polypeptide(L)

Total1H
All99.4 % (179 of 180)99.4 % (179 of 180)
Backbone100.0 % (59 of 59)100.0 % (59 of 59)
Sidechain99.2 % (120 of 121)99.2 % (120 of 121)
Aromatic85.7 % (6 of 7)85.7 % (6 of 7)
Methyl100.0 % (16 of 16)100.0 % (16 of 16)

1. AceSB2Pep

XTAQVFAEER VRELEAEVAE LRRQQGQAKH

Sample

Solvent system trifluoroethanol/water, Pressure 1.000 atm, Temperature 298.000 K, pH 6.300, Details 25%TFE


#NameIsotope labelingTypeConcentration
1AceSB2Pepnatural abundance1.0 mM
2sodium phosphatenatural abundance100.0 mM
3sodium chloridenatural abundance50.0 mM
42,2,2-Trifluoroethanolnatural abundance25.0 %
5H2Onatural abundance65.0 %
6deuterium oxidenatural abundance10.0 %

Protein Blocks Logo
Calculated from 10 models in PDB: 2YON, Strand ID: A Detail


Release date
2013-07-07
Citation
Conservation of dark recovery kinetic parameters and structural features in the pseudomonadaceae "short" light, oxygen, voltage (LOV) protein family: implications for the design of LOV-based optogenetic tools
Rani, R., Jentzsch, K., Lecher, J., Hartmann, R., Willbold, D., Jaeger, K., Krauss, U.
Biochemistry (2013), 52, 4460-4473, PubMed 23746326 , DOI 10.1021/bi400311r ,
Related entities 1. SB2Jalpha, : 1 : 3 entities Detail
Experiments performed 1 experiments Detail
nullKeywords Jalpha-helix, light, oxygen, voltage (LOV) domain, photoreceptor, synthetic peptide