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== Protein Target Selection, Sample Preparation, and Initial Screening == | == Protein Target Selection, Sample Preparation, and Initial Screening == | ||
#[[Target selection|NESG target selection]] | #[[Target selection|NESG target selection]] <br> | ||
#[[DNA cloning protocols|DNA cloning protocols]]<br> | #[[DNA cloning protocols|DNA cloning protocols]]<br> | ||
#[[Protein purification|Protein expression and purification protocols]] <br> | #[[Protein purification|Protein expression and purification protocols]] <br> | ||
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##[[Protein concentration|Protein concentration measurements]] | ##[[Protein concentration|Protein concentration measurements]] | ||
##[[Oligomerization Status|Assessment of Oligomerization Status]] | ##[[Oligomerization Status|Assessment of Oligomerization Status]] | ||
###[[Gel filtration and light scattering|gel-filtration and light scattering]] | ###[[Gel filtration and light scattering|gel-filtration and light scattering]] | ||
###[[NMR determined Rotational correlation time]] | ###[[NMR determined Rotational correlation time]] | ||
##[[MassSpectrometry|Mass spectrum]] | ##[[MassSpectrometry|Mass spectrum]] | ||
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#NMR data acquisition for protein structure determination | #NMR data acquisition for protein structure determination | ||
##[[Common NMR experiment sets]] | ##[[Common NMR experiment sets]] | ||
##[[NMR experiment setup scripts for VNMRJ|Custom NMR experiment setup scripts for VNMRJ]] | ##[[NMR experiment setup scripts for VNMRJ|Custom NMR experiment setup scripts for VNMRJ]] | ||
##1D 1H NMR spectra and 2D [15N, 1H]-HSQC | ##1D 1H NMR spectra and 2D [15N, 1H]-HSQC | ||
##[[Estimation of rotational correlation time]] | ##[[Estimation of rotational correlation time]] | ||
##[[Estimation of measurement time]] | ##[[Estimation of measurement time]] | ||
##NMR experiments for spin system identification | ##NMR experiments for spin system identification | ||
## 2D and 3D NOESY experiments | ##2D and 3D NOESY experiments | ||
###[[Simultaneous 13C,15N-resolved NOESY]] | ###[[Simultaneous 13C,15N-resolved NOESY]] | ||
##Double and triple NMR experiments | ##Double and triple NMR experiments | ||
###3D CBCA(CO)NH and HNCACB | ###3D CBCA(CO)NH and HNCACB | ||
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###(4,3)D HCCH | ###(4,3)D HCCH | ||
##Other NMR experiments | ##Other NMR experiments | ||
###[[2D (13C, 1H) HSQC for fractionally 13C-labeled samples|2D [13C, 1H]-HSQC for fractionally 13C-labeled samples]] | ###[[2D (13C, 1H) HSQC for fractionally 13C-labeled samples|2D [13C, 1H]-HSQC for fractionally 13C-labeled samples]] | ||
###[[Long-range 15N-1H correlation experiments for histidine rings]] - determination of histidine isoprotomer state | ###[[Long-range 15N-1H correlation experiments for histidine rings]] - determination of histidine isoprotomer state | ||
###MEXICO | ###MEXICO | ||
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#Maintenance | #Maintenance | ||
##VARIAN | ##VARIAN | ||
###[[Installing and updating BioPack]] | ###[[Installing and updating BioPack]] | ||
###[[Full probefile calibration]] | ###[[Full probefile calibration]] | ||
###[[Rebooting spectrometer console]] | ###[[Rebooting spectrometer console]] | ||
###[[Conditioning procedure for cryogenic probes]] | ###[[Conditioning procedure for cryogenic probes]] | ||
##BRUKER | ##BRUKER | ||
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###<font color="#000000">General information</font> | ###<font color="#000000">General information</font> | ||
###<font color="#0000ff">Buffalo's Processing Protocol using NMRpipe</font> | ###<font color="#0000ff">Buffalo's Processing Protocol using NMRpipe</font> | ||
##[[Processing NMR spectra with PROSA|PROSA]] | ##[[Processing NMR spectra with PROSA|PROSA]] | ||
##TOPSPIN | ##TOPSPIN | ||
##[[AGNuS/AutoProc|AGNuS/AutoProc]] | ##[[AGNuS/AutoProc|AGNuS/AutoProc]] | ||
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##Spectral format conversion | ##Spectral format conversion | ||
<br> | <br> | ||
== [[Resonance Assignment]] == | == [[Resonance Assignment]] == | ||
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<br> | <br> | ||
#[[ | #[[Resonance Assignment/Principles and concepts|Principles and concepts]] | ||
#[[Resonance Assignmet/Practical aspects|Practical aspects]] | #[[Resonance Assignmet/Practical aspects|Practical aspects]] | ||
##[[Resonance Assignment/Semi-automated protocols|Semi-automated protocols]] | ##[[Resonance Assignment/Semi-automated protocols|Semi-automated protocols]] | ||
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##[[PDB and BMRB Deposition#Preparing_files_for_BMRB_depostion|Depositing chemical shifts]] | ##[[PDB and BMRB Deposition#Preparing_files_for_BMRB_depostion|Depositing chemical shifts]] | ||
<br> | <br> | ||
== Structure Calculation and Validation == | == Structure Calculation and Validation == |
Revision as of 17:39, 1 December 2009
This outline of the NESG NMR Wiki is designed to expand on the existing "Master Recipe" and should serve as an experience harvesting tool.
- It has a rather broad coverage to facilitate long-tewrm growth and development. Aditional compact aggregator pages may be needed to pesent specific information concisely.
- There would be separate webs within the wiki: Public(or Main), NESG, and member lab webs. Most common knowlege topics should be public, unless they are specific to NESG
- We assume that the target audience has some knowledge about NMR and protein structure determination, but make the content useful for training
- "Resonance Assignment" and "Structure Determination" chaptes would focus on individual software packages. The XEASY resonance assignment tree, as the most complete, would serve as a template for other software.
- Most chapters should include a "general principles" section.
Please leave your comments/suggestion at the bottom of this page
HTP NMR structure determination
Protein Target Selection, Sample Preparation, and Initial Screening
- NESG target selection
- DNA cloning protocols
- Protein expression and purification protocols
- Sample Optimization
- Initial protein analysis
NMR Data Collection
- Routine operation
- Advanced operation
- NMR data acquisition for protein structure determination
- Common NMR experiment sets
- Custom NMR experiment setup scripts for VNMRJ
- 1D 1H NMR spectra and 2D [15N, 1H]-HSQC
- Estimation of rotational correlation time
- Estimation of measurement time
- NMR experiments for spin system identification
- 2D and 3D NOESY experiments
- Double and triple NMR experiments
- 3D CBCA(CO)NH and HNCACB
- 3D HNCA and HN(CO)CA
- 3D HAHB(CO)NH
- (4,3)D CABCA(CO)NH and HNCACB
- (4,3)D HABCAB(CO)NH
- (H)CCH
- (H)CCH-TOCSY
- H(C)CH
- H(C)CH-TOCSY
- (4,3)D HCCH
- Other NMR experiments
- 2D [13C, 1H]-HSQC for fractionally 13C-labeled samples
- Long-range 15N-1H correlation experiments for histidine rings - determination of histidine isoprotomer state
- MEXICO
- CLEANEX
- H-D exchange experiment
- 15N spin relaxation parameters
- Advanced problems for data collection
- Maintenance
NMR Data Processing
- General Priciples and Concepts
- Fourier transformation
- Zero-filling
- Apodization
- Phasing
- Linear prediction
- G-matrix Fourier transformation (GFT)
- Alternatives to Fourier transformation
- Maximum entropy reconstruction
- Processing non-uniformly sampled spectra with Multidimensional Decomposition
- ...
- Fourier transformation
- Practical Aspects
- NMRPIPE
- General information
- Buffalo's Processing Protocol using NMRpipe
- PROSA
- TOPSPIN
- AGNuS/AutoProc
- UBNMR
- Spectral format conversion
- NMRPIPE
Resonance Assignment
This chapter focuses on data analysis and resonance assignment packages, as most people stick to a particular software for entire structure determination projects.
- Principles and concepts
- Practical aspects
- Semi-automated protocols
- CARA
- Sparky
- XEASY
- Spin system identification
- Backbone resonance assignment
- GFT-based spectra
- Conventional spectra
- HNCACB/CBCA(CO)NH
- HNCA/HN(CO)CA
- HNCO/HN(CA)CO
- NOESY/TOCSY
- Side chain resonance assignment
- Aliphatic
- GFT NMR spectra
- Conventional spectra
- HAHB(CO)NH
- HCCH-COSY
- HCCH-TOCSY
- Simultaneous NOESY
- (H)CC-TOCSY-(CO)NH
- H(CC-TOCSY-CO)NH
- Aromatic
- GFT-based spectra
- Conventional spectra
- Other
- Trp e1 NH and d1 CH
- Met e CH3
- Asn d2 and Gln e2 NH2
- NOESY peak integration
- Aliphatic
- Automated protocols
- Validation of resonance assignment
- Depositing chemical shifts
- Semi-automated protocols
Structure Calculation and Validation
- Principles and concepts
- Practical aspects
- Structure calculation
- CYANA
- Getting started
- FOUND
- TALOS
- GLOMSA
- NOE calibration
- Manual structure calculation
- Automated NOESY assignment and structure calculation
- Structure calculation with residual dipolar couplings (link to REDCAT/PALES,FINDTENSOR, .rdc file, adding ORI to PDB file)
- Homodimer structure calculations
- AutoStructure
- "Consensus" Approaches
- CS-ROSETTA
- CS-DP ROSETTA
- RDC-ROSETTA
- RDC-assisted dimer structure calculation
- Special topics
- CYANA
- Structure Refinement
- Validation and deposition
- Structure calculation
-- JeffMills - 28 May 2009
Here are two comments from Guy:
- need to have centralized site for downloading all software that NESG has developed or licensed; this would be a central site for NESG scientists to use to access the latest version of all software
- need to allow outside users to access links to all software (they will need licenses to download) and also to download software from NESG
-- AlexEletski - 13 Jul 2009