Structural dynamics of the heme pocket and intersubunit coupling in the dimeric hemoglobin from <i>Scapharca inaequivalvis</i>

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Cooperativity is essential for the proper functioning of numerous proteins by allosteric interactions. Hemoglobin from Scapharca inaequivalvis (HbI) is a homodimeric protein that can serve as a minimal unit for studying cooperativity. We investigated the structural changes in HbI after carbon monoxide dissociation using time-resolved resonance Raman spectroscopy and observed structural rearrangements in the Fe-proximal histidine bond, the position of the heme in the pocket, and the hydrogen bonds between heme and interfacial water upon ligand dissociation. Some of the spectral changes were different from those observed for human adult hemoglobin due to differences in subunit assembly and quaternary changes. The structural rearrangements were similar for the singly and doubly dissociated species but occurred at different rates. The rates of the observed rearrangements indicated that they occurred synchronously with subunit rotation and are influenced by intersubunit coupling, which underlies the positive cooperativity of HbI.
Publisher
AIP Publishing
Issue Date
2024-04
Language
English
Article Type
Article
Citation

JOURNAL OF CHEMICAL PHYSICS, v.160, no.16

ISSN
0021-9606
DOI
10.1063/5.0203594
URI
http://hdl.handle.net/10203/323154
Appears in Collection
CH-Journal Papers(저널논문)
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