Related Experiment Video
Updated: Jul 1, 2026

Exploring Protein-Glycan Interactions: Advances in Nuclear Magnetic Resonance
Published on: August 26, 2025
Ligand-induced tertiary relaxations during the T-to-R quaternary transition in hemoglobin
Luca Ronda1, Stefania Abbruzzetti, Stefano Bruno
1Dipartimento di Biochimica e Biologia Molecolare, Universita degli Studi di Parma, CNISM.
Abstract:
When human hemoglobin is encapsulated in nanoporous silica gels, tertiary and quaternary structural relaxations are dramatically slowed down, allowing the characterization of elusive reaction intermediates. In this work, the conformational and functional changes triggered by CO binding to human deoxyhemoglobin gels were determined in the absence and presence of allosteric effectors. CO rebinding kinetics to human deoxyhemoglobin gels after nanosecond laser photolysis were monitored as a function of time after CO saturation. A maximum entropy analysis of the CO rebinding kinetics shows that the T conformation slowly evolves toward R, with an associated redistribution of tertiary species. The tertiary species are characterized by different CO rebinding rates which are essentially unaffected by the protein quaternary state.
Related Concept Videos
Cooperative Allosteric Transitions
Cooperative Allosteric Transitions
Atomic Nuclei: Types of Nuclear Relaxation
In spin–lattice or longitudinal relaxation, the excited spins exchange energy with the surrounding lattice as they return to the lower energy level. Among several mechanisms that contribute to spin–lattice relaxation, magnetic dipolar interactions are significant. Here, the excited nucleus transfers energy to a nearby...
Protein and Protein Structure
A protein's shape is critical to its function. For example, an enzyme can...
Gene Families
Occasionally these regions can be adapted to take on new roles within the organism, becoming novel genes...
Activation and Inactivation of G Proteins

