The Three Functional States of Proteins: Structured, Intrinsically Disordered, and Phase Separated
Editat de Timir Tripathi, Vladimir N Uverskyen Limba Engleză Paperback – dec 2024
- The book serves as an introduction to a unique volume that provides comprehensive coverage of these three functional states of proteins
- The chapters are written by leading global scientists who are actively engaged in research on these specific protein states
- It presents a broad picture of the current, emerging, and evolving research on these protein states
- Given that this book comprehensively addresses both foundational concepts and recent advancements in the field, it will appeal a broad spectrum of readers from various academic disciplines
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Specificații
ISBN-13: 9780443218095
ISBN-10: 0443218099
Pagini: 466
Dimensiuni: 216 x 276 mm
Greutate: 0.45 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0443218099
Pagini: 466
Dimensiuni: 216 x 276 mm
Greutate: 0.45 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. The three functional states of proteins: Beyond the classical “lock-and-key” paradigm
2. Ordered proteins and structure-function relationship: Classical view
3. Binding of a substrate (“lock and key”) and conformational adaption (“induced fit”) are different stages of enzyme action
4. Intrinsically disordered proteins: Functionality of chaos
5. Protein Conformation-based Phenotypic Switching and Implications in the Origin and Evolution of Multicellularity
6. Hybrid proteins: Fusion chimeras and natural wonders
7. Functional protein oligomers
8. Fuzzy complexes
9. SMARTQ: Single Molecule Amyloid fibRil Tracking and Quantification. A method for accurately imaging, tracking and quantifying the growth of individual amyloid fibrils using TIRF
10. Structural Polymorphism in Amyloids – States within Proteins’ Solid-State
11. Liquid-Liquid Phase Separation, Biomolecular Condensates and Membraneless Organelles: A Novel Blueprint of Intracellular Organization
12. Physical principles and molecular interactions underlying protein phase separation
13. Various levels of phase transitions in the protein universe
14. Targeting phase-separated protein states for drug discovery
15. Protein hydrogels: Structure, Characteristics, and Applications
16. Interactions among the three protein states
17. Protein frustration and fuzziness in the three functional states
18. Thermoresponsive intrinsically disordered protein polymers
19. The evolution and exploration of intrinsically disordered and phase-separated protein states
20. Computational modelling of intrinsically disordered and phase separated protein states
21. Molecular dynamics simulations of intrinsically disordered, fuzzy complexes, and phase separated protein states
22. Biological complexity of the phase separated protein states
23. Protein structure-function continuum
2. Ordered proteins and structure-function relationship: Classical view
3. Binding of a substrate (“lock and key”) and conformational adaption (“induced fit”) are different stages of enzyme action
4. Intrinsically disordered proteins: Functionality of chaos
5. Protein Conformation-based Phenotypic Switching and Implications in the Origin and Evolution of Multicellularity
6. Hybrid proteins: Fusion chimeras and natural wonders
7. Functional protein oligomers
8. Fuzzy complexes
9. SMARTQ: Single Molecule Amyloid fibRil Tracking and Quantification. A method for accurately imaging, tracking and quantifying the growth of individual amyloid fibrils using TIRF
10. Structural Polymorphism in Amyloids – States within Proteins’ Solid-State
11. Liquid-Liquid Phase Separation, Biomolecular Condensates and Membraneless Organelles: A Novel Blueprint of Intracellular Organization
12. Physical principles and molecular interactions underlying protein phase separation
13. Various levels of phase transitions in the protein universe
14. Targeting phase-separated protein states for drug discovery
15. Protein hydrogels: Structure, Characteristics, and Applications
16. Interactions among the three protein states
17. Protein frustration and fuzziness in the three functional states
18. Thermoresponsive intrinsically disordered protein polymers
19. The evolution and exploration of intrinsically disordered and phase-separated protein states
20. Computational modelling of intrinsically disordered and phase separated protein states
21. Molecular dynamics simulations of intrinsically disordered, fuzzy complexes, and phase separated protein states
22. Biological complexity of the phase separated protein states
23. Protein structure-function continuum