Unbalanced Reactions by Markus Krummenacker Q4 2013.

Slides:



Advertisements
Similar presentations
Editing Pathway/Genome Databases. SRI International Bioinformatics Pathway Tools Paradigm Separate database from user interface Navigator provides one.
Advertisements

SRI International Bioinformatics Data Import / Export Markus Krummenacker Bioinformatics Research Group SRI, International Q
Instantiation of Generic Reactions by Markus Krummenacker Q
Unbalanced Reactions by Markus Krummenacker Q
SRI International Bioinformatics 1 The consistency Checker, or Overhauling a PGDB By Ron Caspi.
Photosynthesis. Overview of Photosynthesis importance: fix tons of CO 2 per year, used as energy for virtually all organisms similarity to ETC/ox-phos,
SRI International Bioinformatics 1 Recent Developments in Pathway Tools GMOD Workshop November ‘07 Suzanne Paley Bioinformatics Research Group SRI International.
SRI International Bioinformatics 1 Advanced Editing of Pathway/Genome Databases Ron Caspi.
The consistency Checker, or Overhauling a PGDB By Ron Caspi.
SRI International Bioinformatics 1 Submitting pathway to MetaCyc Ron Caspi.
Section 7.2 Chemical Equations 1.To learn to identify the characteristics of a chemical reaction 2.To learn the information given by a chemical equation.
SRI International Bioinformatics 1 Editing Pathway/Genome Databases Ron Caspi.
SRI International Bioinformatics 1 Pathway Tools Features Available Only in the Desktop Version PathoLogic.
SRI International Bioinformatics Selected PathoLogic Refining Tasks Creation of Protein Complexes Assignment of Modified Proteins Operon Prediction.
Recent Developments and Future Directions in Pathway Tools Peter D. Karp SRI International.
1. Pick up a copy of the notes and the diagram.. The Light Reactions.
Electron Transport Markus Krummenacker Bioinformatics Research Group SRI International
Dead-End Metabolites by Markus Krummenacker Q
Why Create a PGDB? Perform pathway analyses as part of a genome project Analyze omics data Create a central public information resource for the organism,
by Markus Krummenacker June 2011
Chapter 6 Table of Contents Section 1 The Light Reactions
CHAPTER 10 PHOTOSYNTHESIS.
Chapter 1 – Biochemistry: An Introduction
Bioinformatics Research Group
The Pathway Tools FBA Module
The Pathway Tools Schema
Overview of Photosynthesis
Role of light in the activation of some enzymes of calvin cycle " Dark phase enzymes " Dr.Howaida Nounou.
PathoLogic: More about Matching Enzyme Names to Reactions
Building Metabolic Models
How to Administer a PGDB
Photosynthesis the process by which light energy is converted to chemical bond energy and carbon is fixed into organic compounds. The general formula is:
Energy metabolism, enzyme and Cofactors
Photosynthesis Review
A Community Effort to Model the Human Microbiome
AP Biology Photosynthesis Part 2.
Reachability Analysis Bioinformatics Research Group
Dead-End Metabolites by Markus Krummenacker Q
by Markus Krummenacker June 2011
Part 2: Photosynthesis.
Reachability Analysis Bioinformatics Research Group
Process of Photosynthesis
AP Biology Photosynthesis Part 2.
Chlorophyll, more like borophyll! Energy-essential to life -what is it used for?
Energy Generation in Mitochondria and Chloroplasts
AP BIOLOGY Photosynthesis What happens next?
Topic 7.6 – HL Level Enzymes HL.
AP Biology Photosynthesis Part 2.
Bioinformatics Research Group
The Calvin Cycle Or the Dark Side of Photosynthesis
Incremental PathoLogic
Propagating Changed Annotation and Pathway Information
Chloroplast By Jared Bowen-Kauth.
Vicky Maloy Senior Instructional  Technologist Office of Teaching, Learning & Technology Keeping up with ICON.
Equations & Balancing.
Unit 4 Cellular Processes (Part 2) Photosynthesis
8.3 The Process of Photosynthesis
Agenda 2/4 Light Reactions Review LR children’s books
PHOTOSYNTHESIS …………The Details.
Dead-End Metabolites by Markus Krummenacker Q
Enzymes & Chemical Reactions.
Dead-End Metabolites by Markus Krummenacker Q
AP Biology Photosynthesis Part 2.
Instantiation of Generic Reactions
AP Biology Photosynthesis Part 2.
Instantiation of Generic Reactions
Instantiation of Generic Reactions
by Markus Krummenacker Q4 2011
Reachability Analysis
Metabolism: the chemical reactions of a cell
Presentation transcript:

Unbalanced Reactions by Markus Krummenacker Q4 2013

FBA needs balanced reactions If an FBA model contains unbalanced reactions, it can cause infinite sources of material Thus, reactions have to balance all the atoms on the left with the atoms on the right Including H+ . Our convention is pH7.3 Reaction balance checker filters away reactions that are unbalanced or undetermined

.log file lists unbalanced reactions Lists unbalanced reactions for the current PGDB (but not for MetaCyc) 4 sections of problematic reactions: In pathways Standalone small-molecule reactions In signalling-pathways (which contain non-metabolic protein metabolites). (Should be empty these days, because of an earlier filtering step.) All other problematic reactions. Usually, macromolecule metabolites. Usually, not involved in core metabolism.

Common sources of problems (1) SRI has ongoing curation efforts to fix erroneous reactions. By now, most straight forward errors in compound structures or reaction equations have been fixed. Sometimes, in old PGDBs, reactions are wrong, which no longer exist in MetaCyc, and so they can’t be updated automatically. Some reactions describe fairly unknown biochemistry. Lack of knowledge is indicated by the CANNOT-BALANCE? flag (in Reaction Editor).

Common sources of problems (2) H+ unbalanced, with metabolite classes. Protonation by Marvin can not handle structures with R groups. Thus generic reactions have not been automatically proton-balanced. Have to be manually balanced by using Marvin to edit structure (by educated guess) Class metabolites without structures. Macromolecule metabolites, like redox proteins Tricky class metabolites for extremely generic classes. Example: SUGAR-PHOSPHATASE-RXN

Remedies Add/Edit metabolite structures with Marvin Edit reaction with Reaction Editor Balance checker in editor, shows residual Special cases of the balance checker: Structure with R groups: R, R1, R2, R3, R4, R5 MOLECULAR-WEIGHT slot set (by Frame Editor) to less than 0.01 (e.g. E- , light) Frame pairs, where one is a modified form of the other. Structure of modified form has to use unmodified frame as an “atom”. Only 1 such reference supported currently. Example: NAD(P)+ / NAD(P)H

Consistency Checker Under Manual Tasks, “Generate reaction balance report” Independent of FBA. But a good idea in any case. Right-click on listed reaction, to show or fix

Compartments of Transporters For FBA modelling core metabolism, a few transport reactions are essential: ATP synthase, some ETRs like cytochrome oxidase, NADH:ubiquinone oxidoreductase Pathologic inference for a PGDB may not yet infer the correct compartments. RXN-LOCATIONS slot will be cleared, and so defaults are “in” and “out” Reaction Editor can be used to manually fix compartment assignments