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Integrative teaching of metabolic modeling and flux analysis with interactive python modules

Journal Article · · Biochemistry and Molecular Biology
DOI:https://doi.org/10.1002/bmb.21777· OSTI ID:1995902
 [1];  [2];  [2]
  1. Department of Biochemistry and Molecular Biology Michigan State University East Lansing Michigan USA, Department of Plant Biology Michigan State University East Lansing Michigan USA
  2. Department of Plant Biology Michigan State University East Lansing Michigan USA
Abstract

The modeling of rates of biochemical reactions—fluxes—in metabolic networks is widely used for both basic biological research and biotechnological applications. A number of different modeling methods have been developed to estimate and predict fluxes, including kinetic and constraint‐based (Metabolic Flux Analysis and flux balance analysis) approaches. Although different resources exist for teaching these methods individually, to‐date no resources have been developed to teach these approaches in an integrative way that equips learners with an understanding of each modeling paradigm, how they relate to one another, and the information that can be gleaned from each. We have developed a series of modeling simulations in Python to teach kinetic modeling, metabolic control analysis, 13C‐metabolic flux analysis, and flux balance analysis. These simulations are presented in a series of interactive notebooks with guided lesson plans and associated lecture notes. Learners assimilate key principles using models of simple metabolic networks by running simulations, generating and using data, and making and validating predictions about the effects of modifying model parameters. We used these simulations as the hands‐on computer laboratory component of a four‐day metabolic modeling workshop and participant survey results showed improvements in learners' self‐assessed competence and confidence in understanding and applying metabolic modeling techniques after having attended the workshop. The resources provided can be incorporated in their entirety or individually into courses and workshops on bioengineering and metabolic modeling at the undergraduate, graduate, or postgraduate level.

Sponsoring Organization:
USDOE
Grant/Contract Number:
SC0018269
OSTI ID:
1995902
Alternate ID(s):
OSTI ID: 2217585
Journal Information:
Biochemistry and Molecular Biology, Journal Name: Biochemistry and Molecular Biology Journal Issue: 6 Vol. 51; ISSN 1470-8175
Publisher:
Wiley Blackwell (John Wiley & Sons)Copyright Statement
Country of Publication:
Netherlands
Language:
English

References (32)

Optknock: A bilevel programming framework for identifying gene knockout strategies for microbial strain optimization journal October 2003
A modeling and simulation approach to the study of metabolic control analysis journal May 2002
First steps in computational systems biology: A practical session in metabolic modeling and simulation
  • Reyes-Palomares, Armando; Sánchez-Jiménez, Francisca; Medina, Miguel Ángel
  • Biochemistry and Molecular Biology Education, Vol. 37, Issue 3 https://doi.org/10.1002/bmb.20281
journal May 2009
A metabolic control analysis approach to introduce the study of systems in biochemistry: the glycolytic pathway in the red blood cell journal September 2018
Metabolic Flux Analysis book January 2014
Plant Metabolic Flux Analysis book January 2014
Wilcoxon–Mann–Whitney Test book January 2011
Methods and advances in metabolic flux analysis: a mini-review journal January 2015
Engineering metabolism and product formation in Corynebacterium glutamicum by coordinated gene overexpression journal January 2003
Understanding the Practical Consequences of Metabolic Interactions - A Software Package for Teaching and Research journal March 2004
Formulation, construction and analysis of kinetic models of metabolism: A review of modelling frameworks journal December 2017
Conversion of Escherichia coli to Generate All Biomass Carbon from CO2 journal November 2019
Strain improvement by metabolic engineering: lysine production as a case study for systems biology journal June 2005
Teaching cellular metabolism using metabolic model simulations journal January 2022
mfapy: An open-source Python package for 13C-based metabolic flux analysis journal December 2021
From zero to hero—Design-based systems metabolic engineering of Corynebacterium glutamicum for l-lysine production journal March 2011
A comprehensive genome‐scale reconstruction of Escherichia coli metabolism—2011 journal January 2011
Systems metabolic engineering of Escherichia coli for L ‐threonine production journal January 2007
What is flux balance analysis? journal March 2010
A guide to 13C metabolic flux analysis for the cancer biologist journal April 2018
Array programming with NumPy journal September 2020
SciPy 1.0: fundamental algorithms for scientific computing in Python journal February 2020
Metabolic control analysis: a survey of its theoretical and experimental development journal September 1992
Metabolic engineering of Escherichia coli for the production of L-valine based on transcriptome analysis and in silico gene knockout simulation journal April 2007
COPASI--a COmplex PAthway SImulator journal October 2006
Measuring multiple fluxes through plant metabolic networks journal February 2006
It Is All about Metabolic Fluxes journal December 2003
Reconstruction and Use of Microbial Metabolic Networks: the Core Escherichia coli Metabolic Model as an Educational Guide journal September 2010
Metabolic Control Analysis: A Tool for Designing Strategies to Manipulate Metabolic Pathways journal January 2008
Rational design of 13C-labeling experiments for metabolic flux analysis in mammalian cells journal January 2012
COBRApy: COnstraints-Based Reconstruction and Analysis for Python journal January 2013
Validation-based model selection for 13C metabolic flux analysis with uncertain measurement errors journal April 2022

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