
Computational Approaches for Understanding Dynamical Systems: Protein Folding and Assembly by Birgit Strodel
Computational Approaches for Understanding Dynamical Systems: Protein Folding and Assembly, Volume 170 in the Progress in Molecular Biology and Translational Science series, provides the most topical, informative and exciting monographs available on a wide variety of research topics. The series includes in-depth knowledge on the molecular biological aspects of organismal physiology, with this release including chapters on Pairwise-Additive and Polarizable Atomistic Force Fields for Molecular Dynamics Simulations of Proteins, Scale-consistent approach to the derivation of coarse-grained force fields for simulating structure, dynamics, and thermodynamics of biopolymers, Enhanced sampling and free energy methods, and much more.- Foundation of Microfluidics Device Technology
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Design and Applications of Cell-Free Systems Part B
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Artificial Intelligence for Multi-omics Analysis Part A
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Autism
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Receptor Endocytosis and Signalling in Health and Disease - Part A
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Prions and Neurodegenerative Diseases
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Autophagy in Health and Disease
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CRISPR-Cas-Based Genome Editing for Treating Human Diseases - Part B
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The Microbiome in Health and Disease
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Dancing Protein Clouds: Intrinsically Disordered Proteins in Health and Disease, Part B
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Progress in Molecular Biology and Translational Science
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Receptor Endocytosis and Signalling in Health and Disease - Part B
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G Protein Signaling Pathways in Health and Disease
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Cancer Immunotherapy
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Reprogramming the Genome: CRISPR-Cas-based Human Disease Therapy
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Advances in Aggregation Induced Emission Materials in Biosensing and Imaging for Biomedical Applications - Part A
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Osmolytes and Intrinsically Disordered Proteins: From Functional Regulation to Disease Pathogenesis
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Curing Genetic Diseases through Genome Reprogramming
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Advances in CRISPR/Cas and Related Technologies
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Molecular and Cell Biology of Pain
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Reprogramming the Genome: Applications of CRISPR-Cas in non-mammalian systems part B
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Oligomerization in Health and Disease: From Enzymes to G Protein-Coupled Receptors
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RGS Protein Physiology and Pathophysiology
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Molecular Basis of Olfaction
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Molecular and Cellular Regulation of Adaptation to Exercise
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Trafficking of GPCRs
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The Molecular Basis of Viral Infection
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Molecular Biology of Eye Disease
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Dancing Protein Clouds: Intrinsically Disordered Proteins in the Norm and Pathology, Part C
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The Molecular Basis of Drug Addiction
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Regulatory T Cells in Health and Disease
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Growth Hormone in Health and Disease
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Micro/Nanofluidics and Lab-on-Chip Based Emerging Technologies for Biomedical and Translational Research Applications - Part A
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Dancing protein clouds: Intrinsically disordered proteins in health and disease, Part A
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Phage Therapy - Part B
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Human Microbiome in Health and Disease - Part B
"This book is an excellent resource on computational approaches for understanding protein folding and assemblyComputational researchers, curious experimentalists, students, molecular biologists, and protein chemists will find it quite interesting. There are very few books available that go to such depths to explain computational approaches for understanding dynamical systems such as protein folding and assembly." --Doody
Birgit Strodel studied chemistry at Heinrich Heine University Düsseldorf (Germany) and the University of North Carolina at Chapel Hill (USA) and received her PhD in Theoretical Chemistry from the University of Frankfurt/Main (Germany) in 2005. She then joined the group of Prof. David J. Wales at Cambridge University (UK) as a postdoctoral research associate. Since 2009 she heads the Computational Biochemistry Group at the Jülich Research Centre (Germany) and was appointed Professor at Heinrich Heine University Düsseldorf in 2011. Her research interests primarily involve the thermodynamics and kinetics of protein aggregation. Bogdan Barz has graduated in 2002 from Babeș-Bolyai University of Cluj-Napoca, Romania. During his Masters in Applied Mathematics and Astronomy at Babeș-Bolyai University between 2002-2004 he also worked as a researcher at the National Institute for Research and Development of Isotopic and Molecular Technologies of Cluj-Napoca. In 2009 he received his PhD from the Physics and Astronomy Department at the University of Missouri in Columbia, MO, USA, followed by a postdoctoral period at the Physics Department at Drexel University, Philadelphia, USA. In 2012 he joined the Institute of Complex Systems at Forschungszentrum Jülich (Research Centre Jülich), Germany as a postdoctoral fellow. In 2018 he became an independent group leader at the Institute of Physical Biology, Heinrich Heine University Düsseldorf, Germany.Bogdan Barz has graduated in 2002 from Babeș-Bolyai University of Cluj-Napoca, Romania. During his Masters in Applied Mathematics and Astronomy at Babeș-Bolyai University between 2002-2004 he also worked as a researcher at the National Institute for Research and Development of Isotopic and Molecular Technologies of Cluj-Napoca. In 2009 he received his PhD from the Physics and Astronomy Department at the University of Missouri in Columbia, MO, USA, followed by a postdoctoral period at the Physics Department at Drexel University, Philadelphia, USA. In 2012 he joined the Institute of Complex Systems at Forschungszentrum Jülich (Research Centre Jülich), Germany as a postdoctoral fellow. In 2018 he became an independent group leader at the Institute of Physical Biology, Heinrich Heine University Düsseldorf, Germany.
| SKU | Unavailable |
| ISBN 13 | 9780128211359 |
| ISBN 10 | 0128211350 |
| Title | Computational Approaches for Understanding Dynamical Systems: Protein Folding and Assembly |
| Author | Birgit Strodel |
| Series | Progress In Molecular Biology And Translational Science |
| Condition | Unavailable |
| Binding Type | Hardback |
| Publisher | Elsevier Science Publishing Co Inc |
| Year published | 2020-03-04 |
| Number of pages | 552 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |


































