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Solution structure of a membrane-targeting peptide designed based on the N-terminal sequence of E. coli enzyme IIA (Glucose)
SOLUTION NMR
NMR Experiment
Experiment
Type
Sample Contents
Solvent
Ionic Strength
pH
Pressure
Temperature (K)
Spectrometer
1
2D NOESY
2mM peptide, 80mM sodium dodecylsulfate
90% H2O and 10% D2O
5.4
ambient
298
2
TOCSY
2mM peptide, 80mM sodium dodecylsulfate
90% H2O and 10% D2O
5.4
ambient
298
3
DQF-COSY
2mM peptide, 80mM sodium dodecylsulfate
90% H2O and 10% D2O
5.4
ambient
298
4
(1H,15N)HSQC
2mM peptide, 80mM sodium dodecylsulfate
90% H2O and 10% D2O
5.4
ambient
298
5
(1H,13C)HSQC
2mM peptide, 80mM sodium dodecylsulfate
90% H2O and 10% D2O
5.4
ambient
298
NMR Spectrometer Information
Spectrometer
Manufacturer
Model
Field Strength
1
Varian
INOVA
600
NMR Refinement
Method
Details
Software
simulated annealing
The structures are based on 104 distances derived from the NOESY spectra, 20 backbone dihedral angles derived from a set of chemical shifts using the NMR program TALOS, and 5 chi1 angle restraints.
NMRPipe/nmrDraw
NMR Ensemble Information
Conformer Selection Criteria
No NOE violations greater than 0.50 A,
rms difference for bond deviations from ideality less than 0.01 A,
rms difference for angle deviations from ideality less than 5 degrees,
Structures with the lowerest energies in the ensemble.
Conformers Calculated Total Number
100
Conformers Submitted Total Number
5
Representative Model
1 (most resemble the average structure)
Additional NMR Experimental Information
Details
This structure was determined using standard 2D homonuclear NMR techniques, plus the use of backbone angle restraints derived from a set of heteronuclear chemical shifts measured on the natural abundance peptide bound to micelles.
Computation: NMR Software
#
Classification
Version
Software Name
Author
1
data processing
NMRPipe/nmrDraw
2.1
Delaglio, F.
2
noe picking
PIPP
1.0
Garrett, D.
3
refinement
XPLOR-NIH
1.06
Schwieters, C.D., Kuszewski, J., Tjandra, N, Clore, G.M.