Computational Methods for Analyzing Metabolomics Data Using Metabolic Networks

Computational Methods for Analyzing Metabolomics Data Using Metabolic Networks

Author: Weiruo Zhang

Publisher:

Published: 2015

Total Pages:

ISBN-13:

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Metabolism provides energy for cells and organisms to grow, function and respond to their environment, so studying metabolism is fundamental to understanding how cells work. Ultimately, the ability to analyze and predict the effects of perturbations to metabolism will have profound impacts on applications ranging from bioengineering of microbes and plants to treating human disease. That understanding will come through the emerging field of metabolomics. The technology for acquiring high-throughput metabolomics data is advancing rapidly, as are efforts to curate comprehensive metabolic reaction networks. The goal of this work is to gain insight into metabolism by analyzing metabolomic data in the context of a metabolic network. In this study, first, we have developed a new metabolic network analysis method for genetic discovery. We have identified a new problem, which is to use steady state metabolomics data to find the underlying genetic cause of a phenotype. The solution is a qualitative analysis method which does not require quantitative reaction parameters and is robust even when the metabolomic data and network are incomplete. It could be used to predict genes that are responsible for metabolite concentration differences and identify drug targets. We validate the method on Saccharomyces Cerevisiae using single gene deletion mutants and drugs that were believed to target specific steps in metabolic pathways. Cells have evolved to maintain their metabolic homeostasis through various kinds of regulation. However, in current curated metabolic networks, the information about regulation is often missing. In second part of the study, we have developed a new computational method to predict regulatory targets in metabolic pathways using only steady state metabolite abundances. This method could be used to discover missing regulatory information in current curated metabolic networks. We demonstrate that the method can predict useful regulatory targets in Saccharomyces Cerevisiae ergosterol pathway. Third, large-scale in vivo measurements of the metabolome could potentially be used to estimate kinetic parameters for many metabolic reactions. However, in vivo measurements have special properties that are not taken into account in existing methods for estimating kinetic parameters. In vivo measurements of metabolite concentrations and reaction rates have relative errors. Also, reactions in metabolic networks often have multiple substrates and products and are sometimes reversible enzymatic reactions. Therefore, new method is needed to estimate kinetic parameters taking into account both factors. A new method, InVEst (In Vivo Estimation), is described for estimating reaction kinetic parameters, which addresses the specific challenges of in vivo data. InVEst uses maximum likelihood estimation based on a model where all measurements have relative errors. It can be applied to a family of reversible reactions with multiple substrates and products with single displacement mechanism. It also estimates the standard errors of parameter estimations using the bootstrap. Finally, we have developed a mass spectrometry data analysis tool for targeted analysis based on a database-driven algorithm. With this tool, compound identification is an automatic process which could help reduce the extensive manual processing required in current mass spectrometry data analysis.


Metabolomics

Metabolomics

Author: Ron Wehrens

Publisher: CRC Press

Published: 2019-08-19

Total Pages: 313

ISBN-13: 1315353482

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Metabolomics is the scientific study of the chemical processes in a living system, environment and nutrition. It is a relatively new omics science, but the potential applications are wide, including medicine, personalized medicine and intervention studies, food and nutrition, plants, agriculture and environmental science. The topics presented and discussed in this book are based on the European Molecular Biology Organization (EMBO) practical courses in metabolomics bioinformatics taught to those working in the field, from masters to postgraduate students, PhDs, postdoctoral and early PIs. The book covers the basics and fundamentals of data acquisition and analytical technologies, but the primary focus is data handling and data analysis. The mentioning and usage of a particular data analysis tool has been avoided; rather, the focus is on the concepts and principles of data processing and analysis. The material has been class-tested and includes lots of examples, computing and exercises. Key Features: Provides an overview of qualitative /quantitative methods in metabolomics Offers an introduction to the key concepts of metabolomics, including experimental design and technology Covers data handling, processing, analysis, data standards and sharing Contains lots of examples to illustrate the topics Includes contributions from some of the leading researchers in the field of metabolomics with extensive teaching experiences


Plant Metabolomics

Plant Metabolomics

Author: Kazuki Saito

Publisher: Springer Science & Business Media

Published: 2006-06-29

Total Pages: 351

ISBN-13: 3540297820

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Metabolomics – which deals with all metabolites of an organism – is a rapidly-emerging sector of post-genome research fields. It plays significant roles in a variety of fields from medicine to agriculture and holds a fundamental position in functional genomics studies and their application in plant biotechnology. This volume comprehensively covers plant metabolomics for the first time. The chapters offer cutting-edge information on analytical technology, bioinformatics and applications. They were all written by leading researchers who have been directly involved in plant metabolomics research throughout the world. Up-to-date information and future developments are described, thereby producing a volume which is a landmark of plant metabolomics research and a beneficial guideline to graduate students and researchers in academia, industry, and technology transfer organizations in all plant science fields.


Computational Methods and Data Analysis for Metabolomics

Computational Methods and Data Analysis for Metabolomics

Author: Shuzhao Li

Publisher: Humana

Published: 2020-01-18

Total Pages: 0

ISBN-13: 9781071602386

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This book provides a comprehensive guide to scientists, engineers, and students that employ metabolomics in their work, with an emphasis on the understanding and interpretation of the data. Chapters guide readers through common tools for data processing, using database resources, major techniques in data analysis, and integration with other data types and specific scientific domains. Written in the highly successful Methods in Molecular Biology series format, chapters include introductions to their respective topics, practical guidance of methods and techniques, useful web supplements, and connect the steps from experimental metabolomics to scientific discoveries. Authoritative and cutting-edge, Computational Methods and Data Analysis for Metabolomics to ensure successful results in the further study of this vital field.


Metabolic Pathway Design

Metabolic Pathway Design

Author: Pablo Carbonell

Publisher: Springer Nature

Published: 2019-11-05

Total Pages: 168

ISBN-13: 3030298655

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This textbook presents solid tools for in silico engineering biology, offering students a step-by-step guide to mastering the smart design of metabolic pathways. The first part explains the Design-Build-Test-Learn-cycle engineering approach to biology, discussing the basic tools to model biological and chemistry-based systems. Using these basic tools, the second part focuses on various computational protocols for metabolic pathway design, from enzyme selection to pathway discovery and enumeration. In the context of industrial biotechnology, the final part helps readers understand the challenges of scaling up and optimisation. By working with the free programming language Scientific Python, this book provides easily accessible tools for studying and learning the principles of modern in silico metabolic pathway design. Intended for advanced undergraduates and master’s students in biotechnology, biomedical engineering, bioinformatics and systems biology students, the introductory sections make it also useful for beginners wanting to learn the basics of scientific coding and find real-world, hands-on examples.


Optimization Methods in Metabolic Networks

Optimization Methods in Metabolic Networks

Author: Costas D. Maranas

Publisher: John Wiley & Sons

Published: 2016-01-05

Total Pages: 278

ISBN-13: 1119189012

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Provides a tutorial on the computational tools that use mathematical optimization concepts and representations for the curation, analysis and redesign of metabolic networks Organizes, for the first time, the fundamentals of mathematical optimization in the context of metabolic network analysis Reviews the fundamentals of different classes of optimization problems including LP, MILP, MLP and MINLP Explains the most efficient ways of formulating a biological problem using mathematical optimization Reviews a variety of relevant problems in metabolic network curation, analysis and redesign with an emphasis on details of optimization formulations Provides a detailed treatment of bilevel optimization techniques for computational strain design and other relevant problems


Metabolomics in Practice

Metabolomics in Practice

Author: Michael Lämmerhofer

Publisher: John Wiley & Sons

Published: 2013-02-14

Total Pages: 423

ISBN-13: 3527655883

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Unlike other handbooks in this emerging field, this guide focuses on the challenges and critical parameters in running a metabolomics study, including such often-neglected issues as sample preparation, choice of separation and detection method, recording and evaluating data as well as method validation. By systematically covering the entire workflow, from sample preparation to data processing, the insight and advice offered here helps to clear the hurdles in setting up and running a successful analysis, resulting in high-quality data from every experiment. Based on more than a decade of practical experience in developing, optimizing and validating metabolomics approaches as a routine technology in the academic and industrial research laboratory, the lessons taught here are highly relevant for all systems-level approaches, whether in systems biology, biotechnology, toxicology or pharmaceutical sciences. From the Contents: * Sampling and Sample Preparation in Microbial Metabolomics * Tandem Mass Spectrometry Hyphenated with HPLC and UHPLC for Targeted Metabolomics * GC-MS, LC-MS, CE-MS and Ultrahigh Resolution MS (FTICR-MS) in Metabolomics * NMR-based metabolomics analysis * Potential of Microfluidics and Single Cell Analysis in Metabolomics * Data Processing in Metabolomics * Validation and Measurement Uncertainty in Metabolomic Studies * Metabolomics and its Role in the Study of Mammalian Systems and in Plant Sciences * Metabolomics in Biotechnology and Nutritional Metabolomics and more.


Metabolomics

Metabolomics

Author: Jens Nielsen

Publisher: Springer Science & Business Media

Published: 2007-09-19

Total Pages: 292

ISBN-13: 3540747192

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Giving a fresh, substantial and in-depth overview of the topic, this book brings together the latest results in the field of metabolomics. It comprehensively presents the current state of the metabolomics field by underscoring experimental methods, analysis techniques, standardization practices, and advances in specific model systems. As a result, it helps to significantly broaden our perspective on the principles and strategies underpinning this emerging field.