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Dynamics of Biomolecules Studied by Dielectric Spectroscopy / edited by Silvina Cerveny, Jan Swenson.

Springer eBooks EBA - Chemistry and Material Science Collection 2026 Available online

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Format:
Book
Author/Creator:
Cerveny, Silvina.
Contributor:
Cerveny
Series:
Advances in Dielectrics, 2190-9318
Language:
English
Subjects (All):
Spectrum analysis.
Materials--Analysis.
Materials.
Proteins.
Biomaterials.
Spectroscopy.
Materials Characterization Technique.
Biomaterials-Proteins.
Local Subjects:
Spectroscopy.
Materials Characterization Technique.
Biomaterials-Proteins.
Physical Description:
1 online resource (337 pages)
Edition:
1st ed. 2026.
Place of Publication:
Cham : Springer Nature Switzerland : Imprint: Springer, 2026.
Summary:
This contributed volume explores the dielectric properties of biological systems, including amino acids, peptides, proteins, and water. Studying protein dynamics in aqueous solutions enables us to move beyond static snapshots of protein structures, gaining a deeper understanding of how these essential molecules function in their natural environment. Proteins are the workhorses of the cell, and their functions -from catalyzing reactions to transporting molecules and signaling- are intrinsically linked to their dynamic behavior. These movements, ranging from rapid vibrations to large-scale conformational changes, are often essential for their activity. The book covers the most essential experiments related to the dynamics of biomolecules as observed by broadband dielectric and THz spectroscopies. It also reviews the significant progress made in this field over the last twenty years. Furthermore, the dynamics of proteins are compared to those observed in other aqueous solutions of glass-forming systems. The concept of "slaving" in proteins is also explored in depth. This phenomenon refers to how certain protein motions are significantly influenced, and often dominated, by the dynamics of the surrounding solvent, especially water. Additionally, this concept is generalized to include peptides and other glass-forming systems. Furthermore, the book reports on recent advances in anisotropic THz spectroscopy and describes its advantages compared to conventional THz spectroscopy. Overall, this book provides an essential resource for researchers interested in the dynamics of biomolecules who are either using these techniques or interpreting data obtained from them.
Contents:
Broadband Dielectric and THz Spectroscopy on Bio-Related Matter: Water, Amino Acids, Proteins, and Blood
The glass "transition" temperature and the dynamics of polypeptides
Dynamics of Peptides at Low Temperatures: From Monomer to Polymer and the Universal Nature of Slaving Behavior
Atomistic Mechanisms of Protein Dynamics and the Essential Role of Hydration Water
Studies of the Protein Glass Transition and Its Related Dynamics –Comparison with Various Aqueous solutions
Protein dynamics slaved by solvent dynamics as revealed by dielectric spectroscopy
Combined broadband dielectric spectroscopy and nuclear magnetic resonance studies on the dynamics of cooled protein–solvent mixtures
Terahertz Spectroscopy of Water and Proteins: Methodology and Insights
Disorder at the Interface: Hydration Water and the Physics of Intrinsically Disordered Proteins.
Notes:
Print version record.
ISBN:
9783032305886
OCLC:
1612726117

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