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Bioactive Conformation I [electronic resource] /edited by Thomas Peters.

by Peters, Thomas [editor.]; SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Topics in Current Chemistry: 272Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 2007.Description: XII, 309 p. Also available online. online resource.ISBN: 9783540490784.Other title: With contributions by numerous experts.Subject(s): Chemistry | Chemistry, Organic | Chemistry, Physical organic | Biochemistry | Chemistry | Organic Chemistry | Biochemistry, general | Physical Chemistry | Medicinal ChemistryDDC classification: 547 Online resources: Click here to access online
Contents:
Spatial Screening for the Identification of the Bioactive Conformation of Integrin Ligands -- Dynamics and Thermodynamics of Ligand–Protein Interactions -- The Fibroblast Growth Factor (FGF) – FGF Receptor Complex: Progress Towards the Physiological State -- Characterization of Interactions Between Misfolding Proteins and Molecular Chaperones by NMR Spectroscopy -- NMR Analysis of Bioprotective Sugars: Sucrose and Oligomeric (1?2)-?-D-glucopyranosyl-(1?2)-?-D-fructofuranosides -- Residual Dipolar Couplings Report on the Active Conformation of Rhodopsin-Bound Protein Fragments -- Glycosyltransferase Structure and Function -- Exploiting Ligand and Receptor Adaptability in Rational Drug Design Using Dynamics and Structure-Based Strategies.
In: Springer eBooks
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Spatial Screening for the Identification of the Bioactive Conformation of Integrin Ligands -- Dynamics and Thermodynamics of Ligand–Protein Interactions -- The Fibroblast Growth Factor (FGF) – FGF Receptor Complex: Progress Towards the Physiological State -- Characterization of Interactions Between Misfolding Proteins and Molecular Chaperones by NMR Spectroscopy -- NMR Analysis of Bioprotective Sugars: Sucrose and Oligomeric (1?2)-?-D-glucopyranosyl-(1?2)-?-D-fructofuranosides -- Residual Dipolar Couplings Report on the Active Conformation of Rhodopsin-Bound Protein Fragments -- Glycosyltransferase Structure and Function -- Exploiting Ligand and Receptor Adaptability in Rational Drug Design Using Dynamics and Structure-Based Strategies.

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