Validation & Structure Quality

Slides:



Advertisements
Similar presentations
Progress Monitoring Short Response. Rubric for a score of 2 Indicates a thorough understanding of the scientific concept Completed the task correctly.
Advertisements

Introduction to protein x-ray crystallography. Electromagnetic waves E- electromagnetic field strength A- amplitude  - angular velocity - frequency.
Determination of Protein Structure. Methods for Determining Structures X-ray crystallography – uses an X-ray diffraction pattern and electron density.
Protein Primer. Outline n Protein representations n Structure of Proteins Structure of Proteins –Primary: amino acid sequence –Secondary:  -helices &
Mossbauer Spectroscopy in Biological Systems: Proceedings of a meeting held at Allerton House, Monticello, Illinois. Editors: J. T. P. DeBrunner and E.
Computational Biology, Part 10 Protein Structure Prediction and Display Robert F. Murphy Copyright  1996, 1999, All rights reserved.
Proteins are made by linking amino acids Protein Structure Review and Refinement Introduction Brian Bahnson Dept of Chemistry & Biochemistry, University.
A PEPTIDE BOND PEPTIDE BOND Polypeptides are polymers of amino acid residues linked by peptide group Peptide group is planar in nature which limits.
Proteins: Levels of Protein Structure Conformation of Peptide Group
Structure Representation and Coordinates Format Lecture 3 Structural Bioinformatics Dr. Avraham Samson
Computational Structure Prediction Kevin Drew BCH364C/391L Systems Biology/Bioinformatics 2/12/15.
Homology Modeling David Shiuan Department of Life Science and Institute of Biotechnology National Dong Hwa University.
Protein Tertiary Structure Prediction
Introduction to Macromolecular X-ray Crystallography Biochem 300 Borden Lacy Print and online resources: Introduction to Macromolecular X-ray Crystallography,
SMART Teams: Students Modeling A Research Topic Jmol Training 101!
 Four levels of protein structure  Linear  Sub-Structure  3D Structure  Complex Structure.
EBI is an Outstation of the European Molecular Biology Laboratory. A web service for the analysis of macromolecular interactions and complexes PDBe Protein.
1 P9 Extra Discussion Slides. Sequence-Structure-Function Relationships Proteins of similar sequences fold into similar structures and perform similar.
Applied common sense The why, what and how of validation (and what EM can learn of X-ray) Gerard J. Kleywegt Protein Data Bank in Europe EMBL-EBI, Cambridge,
EBI is an Outstation of the European Molecular Biology Laboratory. Annotation Procedures for Structural Data Deposited in the PDBe at EBI.
Crystallographic Databases I590 Spring 2005 Based in part on slides from John C. Huffman.
Molecular visualization
EBI is an Outstation of the European Molecular Biology Laboratory. A web service for the analysis of macromolecular interactions and complexes PDBe Protein.
Patentability Considerations in the 3-D Structure Arts Patentability Considerations in the 3-D Structure Arts Michael P. Woodward Supervisory Patent Examiner.
EBI is an Outstation of the European Molecular Biology Laboratory. Quaternary Structure.
Protein Structure Prediction: Homology Modeling & Threading/Fold Recognition D. Mohanty NII, New Delhi.
EBI is an Outstation of the European Molecular Biology Laboratory. Validation & Structure Quality.
EBI is an Outstation of the European Molecular Biology Laboratory. Sanchayita Sen, Ph.D. PDB Depositions Validation & Structure Quality.
Atomic structure model
X-ray crystallography – an overview (based on Bernie Brown’s talk, Dept. of Chemistry, WFU) Protein is crystallized (sometimes low-gravity atmosphere is.
Protein Structure and Bioinformatics. Chapter 2 What is protein structure? What are proteins made of? What forces determines protein structure? What is.
Refinement is the process of adjusting an atomic model to:
Structural classification of Proteins SCOP Classification: consists of a database Family Evolutionarily related with a significant sequence identity Superfamily.
Lecture 10 CS566 Fall Structural Bioinformatics Motivation Concepts Structure Solving Structure Comparison Structure Prediction Modeling Structural.
Automated Refinement (distinct from manual building) Two TERMS: E total = E data ( w data ) + E stereochemistry E data describes the difference between.
Scientific Literature and Communication Unit 3- Investigative Biology b) Scientific literature and communication.
BCHM - Structural Biology
PDBe Protein Interfaces, Surfaces and Assemblies
Protein Structure BL
PROTEIN MODELLING Presented by Sadhana S.
Critically Appraising a Medical Journal Article
Microgrid Concepts and Distributed Generation Technologies
Computational Structure Prediction
Take a REST from manual searching: PDBe, programmatically
Statistical Data Analysis - Lecture /04/03
Research Methods Dr. X.
What is Scientific Literacy?
Getting the Most out of the PDBe
Ultra-High Resolution X-ray Diffraction
Critical Reading of Clinical Study Results
Reduce the need for human intervention in protein model building
More about Tests and Intervals
1.b What are current best practices for selecting an initial target ligand atomic model(s) for structure refinement from X-ray diffraction data?
Chapter 8 Part 2 Linear Regression
Statistical Analysis Error Bars
Nobel Laureates of X Ray Crystallography
The Scientific Method.
Goals for Today Introduce automated refinement and validation.
Understanding Fossil Butte
Statistical Analysis IB Topic 1.
Goals for Today Introduce automated refinement and validation.
8th Grade Science Content Standard
Homepage and taglines.
Volume 20, Issue 3, Pages (March 2012)
Applying principles of computer science in a biological context
Name three scientific habits of mind and explain them. (pg-38&39)
Bell Ringer: Jan. 7, 2019 Which of the following is equivalent to (2x - 6y) + (8x - 5y)? F. 6x + y G. 10x - 11y H. 7x + 2y J. 8x - 5y K. 2x + 6y.
Chapter 1 The Science of Biology
Lesson Overview 1.1 What Is Science?.
8th Grade Science Content Standard
Presentation transcript:

Validation & Structure Quality

A Scientific Talk Validation: What? Why? How?

Validation 1: the act of validating; finding or testing the truth of something 2: the cognitive process of establishing a valid proof Assessing the quality of a model is validation. It is something that needs to be done both by producers and users of structural data.

Errors in Structures Completely wrong Partial errors Bad data quality Wrong trace, incorrect fold of protein Register errors, where trace of protein is not in keeping with sequence order. Partial errors Incorrectly built loops. Wrong residues built into the structure (i.e., Proline instead of Aspartic acid). Bad data quality Bad geometry and stereochemistry. Incorrect positioning of ligands etc due to lack of experimental evidence. FRAUD !!

Geometry and Stereochemistry errors This is supposed to be Phenylalanine and should look like: BUT….

Geometry and Stereochemistry errors This is supposed to be a sugar and should look like: BUT….

Geometry and Stereochemistry errors This is supposed to be another sugar (sucrose) and should look like: BUT….

Wrong Structures !! PDB entry 1PHY PDB entry 2PHY

Wrong Structures PDB entry 1PTE PDB entry 3PTE

Wrong Structures: Retracted !! “were incorrect in both the hand of the structure and the topology. Thus, the biological interpretations based on the inverted models for MsbA are invalid.” 1PF4

Wrong Structures: Retracted !! “However, because of the lack of clear and continuous electron density for the peptide in the complex structure, the paper is being retracted.” 1F83

Wrong Structures: Fraud !! UAB Researcher involved in fraud ! After a thorough examination of the available data, which included a re-analysis of each structure alleged to have been fabricated, the committee found a preponderance of evidence that structures 1BEF, 1CMW, 1DF9/2QID, 1G40, 1G44, 1L6L, 2OU1, 1RID, 1Y8E, 2A01, and 2HR0 were more likely than not falsified and/or fabricated and recommended that they be removed from the public record. The former employee was H.M. Krishna Murthy, who was found by the Investigation Committee to be solely responsible for the fraudulent data. The coordinates for 2HR0 do not form a connected network of molecules in the crystal lattice. 

Some Truths Never trust a structure at face value. Any structure is only as good as the experimental data which goes into its determination. Just because it is published in Nature/Cell/Science does not mean the structure is not without flaws.

Ground rules for Bioinformatics Don't always believe what programs tell you they're often misleading & sometimes wrong! Don't always believe what databases tell you Don't always believe what lecturers tell you In short, don't be a naive user when computers are applied to biology, it is vital to understand the difference between mathematical & biological significance computers do calculations quickly! Computers don’t do biology, You Do ! 14

Some Quality Indicators Some data quality indicators for structures are Ramachandran Plot Geometry and Stereochemistry R-factor/FreeR-factor (Structures from X-ray crystallography) Correlation between experimental data and structure Resolution of the data upon which the structure is based (Structures from X-ray crystallography)

Ramachandran Plot: Basics A graph between the dihedral angles of an amino acid in a protein. Due to steric hindrance from amino acid side chains, only certain angles are allowed in a folded protein. A plot between the dihedral angles of individual amino acids in a protein can serve to indicate how well the structure has been determined. Any deviations from the allowed values are called Outliers and usually indicate bad geometry

Ramachandran Plot Standard Plot showing where different secondary structures fit into the plot. A real life example. All non-glycine residues are in allowed regions.

Ramachandran Plot: example Ideally, there should be no outliers in the Ramachandran plot, except for Glycine and Proline, which are “special” amino acids. However, there may be some rational explanation for outliers by the scientist depositing the structure. (Always refer to the publication!). Expect to find more than 85-90% of residues to fall into the red regions.

Geometry and Stereochemistry checks Always look at the structure in graphical viewers. Look at the geometry section in PDB files (REMARK 500). Use tools like PDBeAnalysis, PDBSum to analyze structures. http://www.ebi.ac.uk/pdbe-as/PDBeValidate

R-Factor/Correlation R-factor is a measure of the agreement between the crystallographic model and the experimental X-ray diffraction data. Free R-factor is calculated between the structure and a certain subset of the data excluded from the structure calculation process. In a good structure, the difference between R-factor and Free R-factor (DR) should be less than 5%. Correlation calculates the overall correlation between the structure and the data available. Good structure should have overall correlation in excess of 90%. See PDBe atlas pages for experimental correlations in crystal structures Look at the R-factors on the Atlas Pages in the tutorials !!!

Resolution Resolution is a indicator of the level of detail available in the data used for determining structures in X-ray crystallography. Higher resolution (lower number) means that there is more detail available. Low resolution: <3.0A Medium resolution: 1.8-3.0A High Resolution: 1.0 – 1.8A Atomic Resolution: >1.0A Not all parts of the structure are at the same resolution…

So what can you look for… Higher resolution structures where more than one available Good geometry and stereochemistry (Look at the Ramachandran plot) Lower R-factor and DR (FreeR-factor – Rfactor) High correlation coefficient between experimental data and structure. Complete structures (pay attention to the Sequence and how much of it is represented in the structure), with no sequence conflicts. Structures with ligands bound may be more useful for analysis than apo-form structures. Note: These are general guidelines which may help you choose the best structure for your analysis where more than one structure for the same protein is available.

Your Strategy ! Be Analytical ( sceptical and cynical! ) When you are searching for information you need to judge its quality and suitability, for your research. Think critically about each piece of information you find and how you found it. Relevance: Does the information you have found adequately support your research? Does it answer the question, or support one of your arguments? How general or specific is the information about the topic? 23

Validation: programs Some programs for Structure Validation: Procheck http://www.biochem.ucl.ac.uk/~roman/procheck/procheck.html WHATCHECK: http://swift.cmbi.ru.nl/gv/whatcheck/ JCSG Validation: http://www.jcsg.org/scripts/prod/validation1.cgi PDBeAnalysis: http://www.ebi.ac.uk/pdbe-as/PDBeValidate

What do you get as a Structural Biologist? The best chances of winning a Nobel Prize (1946, 1962, 1962, 1972, 1982, 1988, 1991, 1997, 2002, 2003, 2006, 2009), all in X-ray crystallography except 2002. Islands in the Antarctic: Perutz Glacier 67° 37' S, 66° 25W. Bragg Islands 66° 28' S, 66° 27' W. Shull Rocks 66° 27' S, 66° 40' W. Pauling Islands Bernal Islands