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Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance assignments 3. Sequence-specifice distance constraints disulfide bonds spin-spin coupling constants internuclear distance constraints from NOEs residual dipolar couplings hydrogen bonds standard bond lengths; bond angles 4. Distance Geometry Calculations 5. Constrained Energy Minimization; Refinement

Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

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Page 1: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

Solution Structure Determination by NMR and Distance Geometry Calculations

1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg)2. Sequence-specific resonance assignments3. Sequence-specifice distance constraints

disulfide bondsspin-spin coupling constantsinternuclear distance constraints from NOEsresidual dipolar couplingshydrogen bonds standard bond lengths; bond angles

4. Distance Geometry Calculations5. Constrained Energy Minimization; Refinement

Page 2: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

Basic Principles

Nuclear Spin and Magnetization

Page 3: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance
Page 4: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

Magnetization and Coherence

Page 5: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance
Page 6: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

Fourier Transform NMRErnst & AndersonRev. Scientific Instrumentation 37: 93 (1966)

Page 7: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance
Page 8: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

Nuclear Relaxation

Page 9: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance
Page 10: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

Spin-Spin Coupling

Page 11: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

Chemical Shift with Spin-Spin Coupling

Page 12: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

1D NMR Spectrum of a Protein

Page 13: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

2D Correlated SpectroscopY

Page 14: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

AV-COSY

Page 15: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

Nuclear Overhauser Effect (NOE)

Def: The change in the intensity of resonance i upon irradiation of resonance j due to “cross relaxation” between spins i and j through space

Page 16: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance
Page 17: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

2D NOESY Spectrum of a Protein

Page 18: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

Some Useful 2D NMR Experiments

Page 19: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

1H-13C Heteronuclear Correlation Spectrum

Page 20: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance
Page 21: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

Solution Structure Determination by NMR and Distance Geometry Calculations

1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg)2. Sequence-specific resonance assignments3. Sequence-specifice distance constraints

disulfide bondsspin-spin coupling constantsinternuclear distance constraints from NOEsresidual dipolar couplingshydrogen bonds standard bond lengths; bond angles

4. Distance Geometry Calculations5. Constrained Energy Minimization; Refinement

Page 22: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance
Page 23: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance
Page 24: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance
Page 25: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

WR41

Protein NMR Structures

C-TmZip

ER14

MMP-1

IL13

FGF-2

WR90

WR64

LC8

ER115

N-TmZip

JR19

ZR18

OP3

WR33

ZR31 ER75Z-domain

IR24

Page 26: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance

ER75: Ecol YgdK (nmr)ER30: Ecol SufE (xray)IR24: Hinf IscU (nmr)SR17 Bsub IscU (nmr)

N N

C C

YgdKG. Liu et al. (Szyperski)

Gram neg IscU

IscU, SufE,YgdK Domain Families are Structurally

Similar

YgdK cf SufEA. Kuzin et al. (Hunt)

Ramelot et al, J. Mol. Biol. 2004Goldsmith et al., J. Mol. Biol. 2004Liu et al. submitted

T. Ramelot et al. (Kennedy)

Gram pos IscU

G. Kornhaber et al. (Montelione)

Page 27: Solution Structure Determination by NMR and Distance Geometry Calculations 1. Pure Protein (0.3 mL, 0.5 - 1 mM; ~ 10 mg) 2. Sequence-specific resonance