SlideShare a Scribd company logo
1 of 16
Structural Proteomics
by NMR
By Jacqueline De Vera
Veenstra, T. (2006). Chapter 9. Structural Proteomicsby
NMR. In Proteomics for biological discovery. Hoboken, N.J.:
Wiley-Liss.
INTRODUCTION
 Nuclear magnetic resonance (NMR)
 powerful spectroscopic technique that permits the
detailed study at atomic resolution of the three
dimensional structure and dynamics of
macromolecules and their complexes in solution.
 structure determination
 highly specialized, labor-intensive, and time-
consuming technique
 isotopic labeling with 15N and 13C
Determining the structure of a single
protein by NMR
1. sequential resonance assignment to identify
through-bond connectivities along the backbone
and side chains
2. assignment of cross-peaks in nuclear Overhauser
enhancement spectra to obtain short (≤5–6 Å)
interproton distance restraints
3. measurement of additional NMR observables
(torsion angles)
4. calculation of the three-dimensional structure from
the experimental NMR restraints using simulated
annealing.
Contribution can NMR make to structural
proteomics
 2 major methods for deriving high-resolution
structural information at atomic resolution
1. NMR spectroscopy in solution
2. single crystal X-ray diffraction
 Problems
 complexes are generally more difficult to crystallize
than isolated proteins,
 In NMR, providing exchange is either fast (weak
binding) or slow (tight binding) on the chemical shift
time scale
 protein–protein complex by NMR is extremely time
consuming.
Solution!
 shortened the amount of time required by making full
use of prior knowledge in the form of existing high-
resolution crystal structures of the free proteins
9.2 INTERMOLECULAR DISTANCE
RESTRAINTS
 Nuclear Overhauser effect (NOE) is the primary
source of geometric information for NMR-based
structure determination
 Proportional to the sixth root of the distance between
two protons
 upper limit for interproton distances that can be
detected using the NOE is 5–6 Å.
 To Detect NOEs
 combining various isotope (15N and 13C) labeling
strategies with isotope fit ltering experiments
Other methods to derive intermolecular distance
restraints
1. Combination of crosslinking
2. proteolytic digestion
3. mass spectrometry
 However, the data will not yield unique crosslinking partners
but multiple possibilities.
4. NMR-based approach,
 which involves derivatizing a suitablesurface accessible cysteine
(which may have to be introduced by site-directed mutagenesis)
on one protein with either a spin label or a metal binding site
(suchas EDTA) and measuring paramagnetic relaxation
enhancement effects on theother protein to yield long-range (15–
35 Å) distance restraints
 can be applied if one already has a good idea of the interaction
surfaces involved in complex formation.
Other methods to derive intermolecular distance
restraints
 15N/1HN chemical shift perturbation mapping
 cross-saturation experiments
 far more challenging experimentally since it
necessitates that one of the proteins is not only
15N labeled but fully deuterated as well.
Typical isotope labeling schemes used in the study of protein–
protein complexes and
corresponding intermolecular NOEs observed.
9.3 ORIENTATIONAL RESTRAINTS
 Long-range orientational restraints can be derived
from the measurement of residual dipolar couplings
and chemical shift anisotropy
 yield geometric information on the orientation of
an interatomic vector(s) with respect to an external
axis system
 θ, angle between the interatomic vector
 θ, angle that describes the position of the
projection of the interatomic vector on the xy
plane
Method for deriving orientational
information
 Residual dipolar couplings- easiest
 Effectively measure dipolar couplings in solution
 Devise means of inducing only a small (ca. 10−3)
degree oforder such that the N–H dipolar
couplings lie in the ±20 Hz range.
achieved by dissolving the protein or protein
complex of interest in a dilute, water-soluble,
liquid crystalline medium.
9.4 CONJOINED RIGID BODY/TORSION
ANGLE DYNAMICS
 protein complex formation involves no significant changes in
backbone conformation.
 only the interfacial side chains are allowed to alter their
conformation.
 The backbone and noninterfacial side chains of one protein are
held fixed
 second protein are only allowed to rotate and translate as a
rigid body.
 Conjoined rigid body/torsion angle dynamics can readily
be extended to cases where significant changes in
backbone conformation are localized to specific regions
of the protein, such as the binding interface
9.5 DOCKING BASED ON 15N/1HN CHEMICAL SHIFT
PERTURBATION
AND N–H DIPOLAR COUPLINGS
 Docking is a method which predicts the preferred
orientation of one molecule to a second when bound to
each other to form a stable complex.
 What makes the docking problem hard to solve?
 1. scoring problem
 = calculating binding affinity given a protein-ligand complex
 - no general scoring function is available
 2. large number of degrees of freedom
 - most important degrees of freedom:
1. relative orientation of the two molecules
2. conformation of the ligand
3. protein conformation
4. water molecules can be between ligand and protein
5. protonation state
9.6 STRUCTURAL PROTEOMICS OF THE
GLUCOSE ARM OF THE
BACTERIAL PHOSPHOTRANSFERASE SYSTEM
 Phosphotransferase system (PTS)
 provides tight coupling of translocation and
phosphorylation
 a signal transduction pathway involving
phosphoryl transfer whereby a phosphoryl group
originating on phosphoenolpyruvate is
transferred to the translocated carbohydrate
via a series of three bimolecular protein–
protein complexes
9.7 CONCLUSION
 NMR is the only solution technique capable of
providing high-resolution structural information
on protein–protein complexes at atomic resolution.
References
 Veenstra, T. (2006). Chapter 9. Structural
Proteomicsby NMR. In Proteomics for biological
discovery. Hoboken, N.J.: Wiley-Liss.

More Related Content

What's hot

Electrophoretic mobility shift assay
Electrophoretic mobility shift assay Electrophoretic mobility shift assay
Electrophoretic mobility shift assay iqraakbar8
 
Secondary Structure Prediction of proteins
Secondary Structure Prediction of proteins Secondary Structure Prediction of proteins
Secondary Structure Prediction of proteins Vijay Hemmadi
 
Structure analysis of protein
Structure analysis of proteinStructure analysis of protein
Structure analysis of proteinKAUSHAL SAHU
 
Functional proteomics, methods and tools
Functional proteomics, methods and toolsFunctional proteomics, methods and tools
Functional proteomics, methods and toolsKAUSHAL SAHU
 
Protein micro array
Protein micro arrayProtein micro array
Protein micro arraykrupa sagar
 
subtractive hybridization
subtractive hybridizationsubtractive hybridization
subtractive hybridizationSakshi Saxena
 
STRUCTURAL GENOMICS, FUNCTIONAL GENOMICS, COMPARATIVE GENOMICS
STRUCTURAL GENOMICS, FUNCTIONAL GENOMICS, COMPARATIVE GENOMICSSTRUCTURAL GENOMICS, FUNCTIONAL GENOMICS, COMPARATIVE GENOMICS
STRUCTURAL GENOMICS, FUNCTIONAL GENOMICS, COMPARATIVE GENOMICSSHEETHUMOLKS
 
Proteomics 2 d gel, mass spectrometry, maldi tof
Proteomics 2 d gel, mass spectrometry, maldi tofProteomics 2 d gel, mass spectrometry, maldi tof
Proteomics 2 d gel, mass spectrometry, maldi tofnirvarna gr
 
SAGE (Serial analysis of Gene Expression)
SAGE (Serial analysis of Gene Expression)SAGE (Serial analysis of Gene Expression)
SAGE (Serial analysis of Gene Expression)talhakhat
 
methods for protein structure prediction
methods for protein structure predictionmethods for protein structure prediction
methods for protein structure predictionkaramveer prajapat
 
Peptide Mass Fingerprinting
Peptide Mass FingerprintingPeptide Mass Fingerprinting
Peptide Mass FingerprintingRida Khalid
 

What's hot (20)

Electrophoretic mobility shift assay
Electrophoretic mobility shift assay Electrophoretic mobility shift assay
Electrophoretic mobility shift assay
 
Protein fold recognition and ab_initio modeling
Protein fold recognition and ab_initio modelingProtein fold recognition and ab_initio modeling
Protein fold recognition and ab_initio modeling
 
PROTEIN MICROARRAYS
PROTEIN MICROARRAYSPROTEIN MICROARRAYS
PROTEIN MICROARRAYS
 
Secondary Structure Prediction of proteins
Secondary Structure Prediction of proteins Secondary Structure Prediction of proteins
Secondary Structure Prediction of proteins
 
YEAST TWO HYBRID SYSTEM
 YEAST TWO HYBRID SYSTEM YEAST TWO HYBRID SYSTEM
YEAST TWO HYBRID SYSTEM
 
Structure analysis of protein
Structure analysis of proteinStructure analysis of protein
Structure analysis of protein
 
Functional proteomics, methods and tools
Functional proteomics, methods and toolsFunctional proteomics, methods and tools
Functional proteomics, methods and tools
 
proteomics
 proteomics proteomics
proteomics
 
Protein micro array
Protein micro arrayProtein micro array
Protein micro array
 
subtractive hybridization
subtractive hybridizationsubtractive hybridization
subtractive hybridization
 
Gene prediction method
Gene prediction method Gene prediction method
Gene prediction method
 
Structural genomics
Structural genomicsStructural genomics
Structural genomics
 
STRUCTURAL GENOMICS, FUNCTIONAL GENOMICS, COMPARATIVE GENOMICS
STRUCTURAL GENOMICS, FUNCTIONAL GENOMICS, COMPARATIVE GENOMICSSTRUCTURAL GENOMICS, FUNCTIONAL GENOMICS, COMPARATIVE GENOMICS
STRUCTURAL GENOMICS, FUNCTIONAL GENOMICS, COMPARATIVE GENOMICS
 
Scop database
Scop databaseScop database
Scop database
 
Sequence Assembly
Sequence AssemblySequence Assembly
Sequence Assembly
 
Shotgun and clone contig method
Shotgun and clone contig methodShotgun and clone contig method
Shotgun and clone contig method
 
Proteomics 2 d gel, mass spectrometry, maldi tof
Proteomics 2 d gel, mass spectrometry, maldi tofProteomics 2 d gel, mass spectrometry, maldi tof
Proteomics 2 d gel, mass spectrometry, maldi tof
 
SAGE (Serial analysis of Gene Expression)
SAGE (Serial analysis of Gene Expression)SAGE (Serial analysis of Gene Expression)
SAGE (Serial analysis of Gene Expression)
 
methods for protein structure prediction
methods for protein structure predictionmethods for protein structure prediction
methods for protein structure prediction
 
Peptide Mass Fingerprinting
Peptide Mass FingerprintingPeptide Mass Fingerprinting
Peptide Mass Fingerprinting
 

Similar to Structural proteomics

Ko sponholtz NMR project
Ko sponholtz NMR projectKo sponholtz NMR project
Ko sponholtz NMR projectKwonil Ko
 
Molecular docking
Molecular dockingMolecular docking
Molecular dockingRahul B S
 
SAR BY NMR (Structure Activity Relationship by Using NMR)
SAR BY NMR (Structure Activity Relationship by Using NMR)SAR BY NMR (Structure Activity Relationship by Using NMR)
SAR BY NMR (Structure Activity Relationship by Using NMR)SAKEEL AHMED
 
Pharmacophore Modeling and Docking Techniques.ppt
Pharmacophore Modeling and Docking Techniques.pptPharmacophore Modeling and Docking Techniques.ppt
Pharmacophore Modeling and Docking Techniques.pptDrVivekChauhan1
 
Principles of RNA compaction : insights from equilibrium folding pathway of p...
Principles of RNA compaction : insights from equilibrium folding pathway of p...Principles of RNA compaction : insights from equilibrium folding pathway of p...
Principles of RNA compaction : insights from equilibrium folding pathway of p...Keiji Takamoto
 
Discovery of active site of vinblastine as application of nanotechnology in m...
Discovery of active site of vinblastine as application of nanotechnology in m...Discovery of active site of vinblastine as application of nanotechnology in m...
Discovery of active site of vinblastine as application of nanotechnology in m...Nanomedicine Journal (NMJ)
 
The Assembly, Structure and Activation of Influenza a M2 Transmembrane Domain...
The Assembly, Structure and Activation of Influenza a M2 Transmembrane Domain...The Assembly, Structure and Activation of Influenza a M2 Transmembrane Domain...
The Assembly, Structure and Activation of Influenza a M2 Transmembrane Domain...Haley D. Norman
 
Radiolytic Modification of Basic Amino Acid Residues in Peptides : Probes for...
Radiolytic Modification of Basic Amino Acid Residues in Peptides : Probes for...Radiolytic Modification of Basic Amino Acid Residues in Peptides : Probes for...
Radiolytic Modification of Basic Amino Acid Residues in Peptides : Probes for...Keiji Takamoto
 
Nuclear magnetic resonance (enzymology)
Nuclear magnetic resonance (enzymology) Nuclear magnetic resonance (enzymology)
Nuclear magnetic resonance (enzymology) Mohsin Shad
 
Davey l1 macromolec-struc-anlys(1) lec 1
Davey l1 macromolec-struc-anlys(1) lec 1Davey l1 macromolec-struc-anlys(1) lec 1
Davey l1 macromolec-struc-anlys(1) lec 1RANJANI001
 
Characterization Techniques for Nanoparticles
Characterization Techniques for NanoparticlesCharacterization Techniques for Nanoparticles
Characterization Techniques for NanoparticlesRichardJGray
 
Protein Struc determination.pdf
Protein Struc determination.pdfProtein Struc determination.pdf
Protein Struc determination.pdfNabin Munankarmi
 
Proteomics Practical (NMR and Protein 3D software
Proteomics Practical (NMR and Protein 3D softwareProteomics Practical (NMR and Protein 3D software
Proteomics Practical (NMR and Protein 3D softwareiqraakbar8
 
BT631-11-x-ray_crystallography_introduction
BT631-11-x-ray_crystallography_introductionBT631-11-x-ray_crystallography_introduction
BT631-11-x-ray_crystallography_introductionRajesh G
 
Limitations & lessons in the use of x ray structural information in drug design
Limitations & lessons in the use of x ray structural information in drug designLimitations & lessons in the use of x ray structural information in drug design
Limitations & lessons in the use of x ray structural information in drug designDilip Darade
 
13C Chemical shifts of SUMO protein in the
13C Chemical shifts of SUMO protein in the13C Chemical shifts of SUMO protein in the
13C Chemical shifts of SUMO protein in theAbhilash Kannan
 

Similar to Structural proteomics (20)

Ko sponholtz NMR project
Ko sponholtz NMR projectKo sponholtz NMR project
Ko sponholtz NMR project
 
Molecular docking
Molecular dockingMolecular docking
Molecular docking
 
SAR BY NMR (Structure Activity Relationship by Using NMR)
SAR BY NMR (Structure Activity Relationship by Using NMR)SAR BY NMR (Structure Activity Relationship by Using NMR)
SAR BY NMR (Structure Activity Relationship by Using NMR)
 
วิจัยต้นอ้อ
วิจัยต้นอ้อวิจัยต้นอ้อ
วิจัยต้นอ้อ
 
Pharmacophore Modeling and Docking Techniques.ppt
Pharmacophore Modeling and Docking Techniques.pptPharmacophore Modeling and Docking Techniques.ppt
Pharmacophore Modeling and Docking Techniques.ppt
 
Quaternary structuree determination
Quaternary structuree determinationQuaternary structuree determination
Quaternary structuree determination
 
opti.pptx
opti.pptxopti.pptx
opti.pptx
 
Principles of RNA compaction : insights from equilibrium folding pathway of p...
Principles of RNA compaction : insights from equilibrium folding pathway of p...Principles of RNA compaction : insights from equilibrium folding pathway of p...
Principles of RNA compaction : insights from equilibrium folding pathway of p...
 
Discovery of active site of vinblastine as application of nanotechnology in m...
Discovery of active site of vinblastine as application of nanotechnology in m...Discovery of active site of vinblastine as application of nanotechnology in m...
Discovery of active site of vinblastine as application of nanotechnology in m...
 
The Assembly, Structure and Activation of Influenza a M2 Transmembrane Domain...
The Assembly, Structure and Activation of Influenza a M2 Transmembrane Domain...The Assembly, Structure and Activation of Influenza a M2 Transmembrane Domain...
The Assembly, Structure and Activation of Influenza a M2 Transmembrane Domain...
 
Radiolytic Modification of Basic Amino Acid Residues in Peptides : Probes for...
Radiolytic Modification of Basic Amino Acid Residues in Peptides : Probes for...Radiolytic Modification of Basic Amino Acid Residues in Peptides : Probes for...
Radiolytic Modification of Basic Amino Acid Residues in Peptides : Probes for...
 
Nuclear magnetic resonance (enzymology)
Nuclear magnetic resonance (enzymology) Nuclear magnetic resonance (enzymology)
Nuclear magnetic resonance (enzymology)
 
Davey l1 macromolec-struc-anlys(1) lec 1
Davey l1 macromolec-struc-anlys(1) lec 1Davey l1 macromolec-struc-anlys(1) lec 1
Davey l1 macromolec-struc-anlys(1) lec 1
 
Characterization Techniques for Nanoparticles
Characterization Techniques for NanoparticlesCharacterization Techniques for Nanoparticles
Characterization Techniques for Nanoparticles
 
Protein Struc determination.pdf
Protein Struc determination.pdfProtein Struc determination.pdf
Protein Struc determination.pdf
 
Proteomics Practical (NMR and Protein 3D software
Proteomics Practical (NMR and Protein 3D softwareProteomics Practical (NMR and Protein 3D software
Proteomics Practical (NMR and Protein 3D software
 
BT631-11-x-ray_crystallography_introduction
BT631-11-x-ray_crystallography_introductionBT631-11-x-ray_crystallography_introduction
BT631-11-x-ray_crystallography_introduction
 
Limitations & lessons in the use of x ray structural information in drug design
Limitations & lessons in the use of x ray structural information in drug designLimitations & lessons in the use of x ray structural information in drug design
Limitations & lessons in the use of x ray structural information in drug design
 
13C Chemical shifts of SUMO protein in the
13C Chemical shifts of SUMO protein in the13C Chemical shifts of SUMO protein in the
13C Chemical shifts of SUMO protein in the
 
2D NMR.pptx
2D NMR.pptx2D NMR.pptx
2D NMR.pptx
 

Recently uploaded

Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AIabhishek36461
 
Work Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvWork Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvLewisJB
 
Transport layer issues and challenges - Guide
Transport layer issues and challenges - GuideTransport layer issues and challenges - Guide
Transport layer issues and challenges - GuideGOPINATHS437943
 
Correctly Loading Incremental Data at Scale
Correctly Loading Incremental Data at ScaleCorrectly Loading Incremental Data at Scale
Correctly Loading Incremental Data at ScaleAlluxio, Inc.
 
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)dollysharma2066
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionDr.Costas Sachpazis
 
complete construction, environmental and economics information of biomass com...
complete construction, environmental and economics information of biomass com...complete construction, environmental and economics information of biomass com...
complete construction, environmental and economics information of biomass com...asadnawaz62
 
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerAnamika Sarkar
 
Electronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfElectronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfme23b1001
 
Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substationstephanwindworld
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort servicejennyeacort
 
lifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptxlifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptxsomshekarkn64
 
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfCCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfAsst.prof M.Gokilavani
 
Vishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsVishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsSachinPawar510423
 
Introduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptxIntroduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptxk795866
 
Arduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptArduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptSAURABHKUMAR892774
 
Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...121011101441
 

Recently uploaded (20)

Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptxExploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
Exploring_Network_Security_with_JA3_by_Rakesh Seal.pptx
 
Past, Present and Future of Generative AI
Past, Present and Future of Generative AIPast, Present and Future of Generative AI
Past, Present and Future of Generative AI
 
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
🔝9953056974🔝!!-YOUNG call girls in Rajendra Nagar Escort rvice Shot 2000 nigh...
 
Work Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvvWork Experience-Dalton Park.pptxfvvvvvvv
Work Experience-Dalton Park.pptxfvvvvvvv
 
Transport layer issues and challenges - Guide
Transport layer issues and challenges - GuideTransport layer issues and challenges - Guide
Transport layer issues and challenges - Guide
 
Correctly Loading Incremental Data at Scale
Correctly Loading Incremental Data at ScaleCorrectly Loading Incremental Data at Scale
Correctly Loading Incremental Data at Scale
 
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
Call Us ≽ 8377877756 ≼ Call Girls In Shastri Nagar (Delhi)
 
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective IntroductionSachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
Sachpazis Costas: Geotechnical Engineering: A student's Perspective Introduction
 
complete construction, environmental and economics information of biomass com...
complete construction, environmental and economics information of biomass com...complete construction, environmental and economics information of biomass com...
complete construction, environmental and economics information of biomass com...
 
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube ExchangerStudy on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
Study on Air-Water & Water-Water Heat Exchange in a Finned Tube Exchanger
 
Electronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdfElectronically Controlled suspensions system .pdf
Electronically Controlled suspensions system .pdf
 
Earthing details of Electrical Substation
Earthing details of Electrical SubstationEarthing details of Electrical Substation
Earthing details of Electrical Substation
 
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort serviceGurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
Gurgaon ✡️9711147426✨Call In girls Gurgaon Sector 51 escort service
 
lifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptxlifi-technology with integration of IOT.pptx
lifi-technology with integration of IOT.pptx
 
young call girls in Green Park🔝 9953056974 🔝 escort Service
young call girls in Green Park🔝 9953056974 🔝 escort Serviceyoung call girls in Green Park🔝 9953056974 🔝 escort Service
young call girls in Green Park🔝 9953056974 🔝 escort Service
 
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdfCCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
CCS355 Neural Networks & Deep Learning Unit 1 PDF notes with Question bank .pdf
 
Vishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documentsVishratwadi & Ghorpadi Bridge Tender documents
Vishratwadi & Ghorpadi Bridge Tender documents
 
Introduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptxIntroduction-To-Agricultural-Surveillance-Rover.pptx
Introduction-To-Agricultural-Surveillance-Rover.pptx
 
Arduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.pptArduino_CSE ece ppt for working and principal of arduino.ppt
Arduino_CSE ece ppt for working and principal of arduino.ppt
 
Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...Instrumentation, measurement and control of bio process parameters ( Temperat...
Instrumentation, measurement and control of bio process parameters ( Temperat...
 

Structural proteomics

  • 1. Structural Proteomics by NMR By Jacqueline De Vera Veenstra, T. (2006). Chapter 9. Structural Proteomicsby NMR. In Proteomics for biological discovery. Hoboken, N.J.: Wiley-Liss.
  • 2. INTRODUCTION  Nuclear magnetic resonance (NMR)  powerful spectroscopic technique that permits the detailed study at atomic resolution of the three dimensional structure and dynamics of macromolecules and their complexes in solution.  structure determination  highly specialized, labor-intensive, and time- consuming technique  isotopic labeling with 15N and 13C
  • 3. Determining the structure of a single protein by NMR 1. sequential resonance assignment to identify through-bond connectivities along the backbone and side chains 2. assignment of cross-peaks in nuclear Overhauser enhancement spectra to obtain short (≤5–6 Å) interproton distance restraints 3. measurement of additional NMR observables (torsion angles) 4. calculation of the three-dimensional structure from the experimental NMR restraints using simulated annealing.
  • 4. Contribution can NMR make to structural proteomics  2 major methods for deriving high-resolution structural information at atomic resolution 1. NMR spectroscopy in solution 2. single crystal X-ray diffraction  Problems  complexes are generally more difficult to crystallize than isolated proteins,  In NMR, providing exchange is either fast (weak binding) or slow (tight binding) on the chemical shift time scale  protein–protein complex by NMR is extremely time consuming.
  • 5. Solution!  shortened the amount of time required by making full use of prior knowledge in the form of existing high- resolution crystal structures of the free proteins
  • 6. 9.2 INTERMOLECULAR DISTANCE RESTRAINTS  Nuclear Overhauser effect (NOE) is the primary source of geometric information for NMR-based structure determination  Proportional to the sixth root of the distance between two protons  upper limit for interproton distances that can be detected using the NOE is 5–6 Å.  To Detect NOEs  combining various isotope (15N and 13C) labeling strategies with isotope fit ltering experiments
  • 7. Other methods to derive intermolecular distance restraints 1. Combination of crosslinking 2. proteolytic digestion 3. mass spectrometry  However, the data will not yield unique crosslinking partners but multiple possibilities. 4. NMR-based approach,  which involves derivatizing a suitablesurface accessible cysteine (which may have to be introduced by site-directed mutagenesis) on one protein with either a spin label or a metal binding site (suchas EDTA) and measuring paramagnetic relaxation enhancement effects on theother protein to yield long-range (15– 35 Å) distance restraints  can be applied if one already has a good idea of the interaction surfaces involved in complex formation.
  • 8. Other methods to derive intermolecular distance restraints  15N/1HN chemical shift perturbation mapping  cross-saturation experiments  far more challenging experimentally since it necessitates that one of the proteins is not only 15N labeled but fully deuterated as well.
  • 9. Typical isotope labeling schemes used in the study of protein– protein complexes and corresponding intermolecular NOEs observed.
  • 10. 9.3 ORIENTATIONAL RESTRAINTS  Long-range orientational restraints can be derived from the measurement of residual dipolar couplings and chemical shift anisotropy  yield geometric information on the orientation of an interatomic vector(s) with respect to an external axis system  θ, angle between the interatomic vector  θ, angle that describes the position of the projection of the interatomic vector on the xy plane
  • 11. Method for deriving orientational information  Residual dipolar couplings- easiest  Effectively measure dipolar couplings in solution  Devise means of inducing only a small (ca. 10−3) degree oforder such that the N–H dipolar couplings lie in the ±20 Hz range. achieved by dissolving the protein or protein complex of interest in a dilute, water-soluble, liquid crystalline medium.
  • 12. 9.4 CONJOINED RIGID BODY/TORSION ANGLE DYNAMICS  protein complex formation involves no significant changes in backbone conformation.  only the interfacial side chains are allowed to alter their conformation.  The backbone and noninterfacial side chains of one protein are held fixed  second protein are only allowed to rotate and translate as a rigid body.  Conjoined rigid body/torsion angle dynamics can readily be extended to cases where significant changes in backbone conformation are localized to specific regions of the protein, such as the binding interface
  • 13. 9.5 DOCKING BASED ON 15N/1HN CHEMICAL SHIFT PERTURBATION AND N–H DIPOLAR COUPLINGS  Docking is a method which predicts the preferred orientation of one molecule to a second when bound to each other to form a stable complex.  What makes the docking problem hard to solve?  1. scoring problem  = calculating binding affinity given a protein-ligand complex  - no general scoring function is available  2. large number of degrees of freedom  - most important degrees of freedom: 1. relative orientation of the two molecules 2. conformation of the ligand 3. protein conformation 4. water molecules can be between ligand and protein 5. protonation state
  • 14. 9.6 STRUCTURAL PROTEOMICS OF THE GLUCOSE ARM OF THE BACTERIAL PHOSPHOTRANSFERASE SYSTEM  Phosphotransferase system (PTS)  provides tight coupling of translocation and phosphorylation  a signal transduction pathway involving phosphoryl transfer whereby a phosphoryl group originating on phosphoenolpyruvate is transferred to the translocated carbohydrate via a series of three bimolecular protein– protein complexes
  • 15. 9.7 CONCLUSION  NMR is the only solution technique capable of providing high-resolution structural information on protein–protein complexes at atomic resolution.
  • 16. References  Veenstra, T. (2006). Chapter 9. Structural Proteomicsby NMR. In Proteomics for biological discovery. Hoboken, N.J.: Wiley-Liss.

Editor's Notes

  1. In bacteria, carbohydrate transport across the membrane is mediated by the phosphoenolpyruvate: sugar phosphotransferase system (PTS