Abstract
Computational modeling of genomic regulation has become an important focus of systems biology and genomic signal processing for the past several years. It holds the promise to uncover both the structure and dynamical properties of the complex gene, protein or metabolic networks responsible for the cell functioning in various contexts and regimes. This, in turn, will lead to the development of optimal intervention strategies for prevention and control of disease. At the same time, constructing such computational models faces several challenges. High complexity is one of the major impediments for the practical applications of the models. Thus, reducing the size/complexity of a model becomes a critical issue in problems such as model selection, construction of tractable subnetwork models, and control of its dynamical behavior. We focus on the reduction problem in the context of two specific models of genomic regulation: Boolean networks with perturbation (BNP) and probabilistic Boolean networks (PBN). We also compare and draw a parallel between the reduction problem and two other important problems of computational modeling of genomic networks: the problem of network inference and the problem of designing external control policies for intervention/altering the dynamics of the model.
Current Genomics
Title: Boolean Models of Genomic Regulatory Networks: Reduction Mappings, Inference, and External Control
Volume: 10 Issue: 6
Author(s): Ivan Ivanov
Affiliation:
Abstract: Computational modeling of genomic regulation has become an important focus of systems biology and genomic signal processing for the past several years. It holds the promise to uncover both the structure and dynamical properties of the complex gene, protein or metabolic networks responsible for the cell functioning in various contexts and regimes. This, in turn, will lead to the development of optimal intervention strategies for prevention and control of disease. At the same time, constructing such computational models faces several challenges. High complexity is one of the major impediments for the practical applications of the models. Thus, reducing the size/complexity of a model becomes a critical issue in problems such as model selection, construction of tractable subnetwork models, and control of its dynamical behavior. We focus on the reduction problem in the context of two specific models of genomic regulation: Boolean networks with perturbation (BNP) and probabilistic Boolean networks (PBN). We also compare and draw a parallel between the reduction problem and two other important problems of computational modeling of genomic networks: the problem of network inference and the problem of designing external control policies for intervention/altering the dynamics of the model.
Export Options
About this article
Cite this article as:
Ivanov Ivan, Boolean Models of Genomic Regulatory Networks: Reduction Mappings, Inference, and External Control, Current Genomics 2009; 10 (6) . https://dx.doi.org/10.2174/138920209789177584
DOI https://dx.doi.org/10.2174/138920209789177584 |
Print ISSN 1389-2029 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5488 |
Call for Papers in Thematic Issues
Current Genomics in Cardiovascular Research
Cardiovascular diseases are the main cause of death in the world, in recent years we have had important advances in the interaction between cardiovascular disease and genomics. In this Research Topic, we intend for researchers to present their results with a focus on basic, translational and clinical investigations associated with ...read more
Deep learning in Single Cell Analysis
The field of biology is undergoing a revolution in our ability to study individual cells at the molecular level, and to integrate data from multiple sources and modalities. This has been made possible by advances in technologies for single-cell sequencing, multi-omics profiling, spatial transcriptomics, and high-throughput imaging, as well as ...read more
New insights on Pediatric Tumors and Associated Cancer Predisposition Syndromes
Because of the broad spectrum of children cancer susceptibility, the diagnosis of cancer risk syndromes in children is rarely used in direct cancer treatment. The field of pediatric cancer genetics and genomics will only continue to expand as a result of increasing use of genetic testing tools. It's possible that ...read more
Related Journals
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
- Announcements
Related Articles
-
Nucleic Acid Aptamers: Clinical Applications and Promising New Horizons
Current Medicinal Chemistry Inhibition of Dipeptidyl Peptidase-4 (DPP-4): A Target to Treat Type 2 Diabetes
Current Enzyme Inhibition Organometallic Complexes: New Tools for Chemotherapy
Current Medicinal Chemistry Biodegradation Aspects of Carbendazim and Sulfosulfuron: Trends, Scope and Relevance
Current Medicinal Chemistry Surgical Options for Management of Malignant Pleural Mesothelioma in the Current Era
Current Respiratory Medicine Reviews The Faulty Perinatal Hormonal Imprinting as Functional Teratogen
Current Pediatric Reviews Strategies for Leukotriene Modulation in Dermatology: Even More Visionary Perspectives? An Update
Anti-Inflammatory & Anti-Allergy Agents in Medicinal Chemistry Pharmacological Characterization of Histone Deacetylase Inhibitor and Tumor Cell-Growth Inhibition Properties of New Benzofuranone Compounds
Current Cancer Drug Targets Farnesyltransferase Inhibitors: A Detailed Chemical View on an Elusive Biological Problem
Current Medicinal Chemistry Involvement of the Toxic AGEs (TAGE)-RAGE System in the Pathogenesis of Diabetic Vascular Complications: A Novel Therapeutic Strategy
Current Drug Targets Recent Advances in the Development of Anti-Infective Prophylactic and/or Therapeutic Agents Based on Toll-Like Receptor (TLRs)
Recent Patents on Anti-Infective Drug Discovery Self-Adjuvanting Lipopeptide Vaccines
Current Medicinal Chemistry Thirty Years of Polyamine-Related Approaches to Cancer Therapy. Retrospect and Prospect. Part 2. Structural Analogues and Derivatives
Current Drug Targets Garlic-Derived Allyl Sulfides in Cancer Therapy
Anti-Cancer Agents in Medicinal Chemistry The Return of the INGs, Histone Mark Sensors and Phospholipid Signaling Effectors
Current Drug Targets Gene Therapy Approaches for the Selective Killing of Cancer Cells
Current Pharmaceutical Design Anticancer Evaluation of 3,4,5,4'-trans-tetramethoxystilbene (DMU-212) and Its Analogs Against an Extensive Panel of Human Tumor Cell Lines
Letters in Drug Design & Discovery Ascorbic Acid in Cancer Chemoprevention: Translational Perspectives and Efficacy
Current Drug Targets A Molecular Signature for Oncogenic BRAF in Human Colon Cancer Cells is Revealed by Microarray Analysis
Current Cancer Drug Targets Marine Peptides and Related Compounds in Clinical Trial+
Anti-Cancer Agents in Medicinal Chemistry