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6I3T: Crystal structure of murine neuroglobin bound to CO at 40 K.

Database
Publication Date:
2019
abstract:
A combined biophysical approach was applied to map gas-docking sites within murine neuroglobin (Ngb), revealing snapshots of events that might govern activity and dynamics in this unique hexacoordinate globin, which is most likely to be involved in gas-sensing in the central nervous system and for which a precise mechanism of action remains to be elucidated. The application of UV-visible microspectroscopy in crystallo, solution X-ray absorption near-edge spectroscopy and X-ray diffraction experiments at 15-40 K provided the structural characterization of an Ngb photolytic intermediate by cryo-trapping and allowed direct observation of the relocation of carbon monoxide within the distal heme pocket after photodissociation. Moreover, X-ray diffraction at 100 K under a high pressure of dioxygen, a physiological ligand of Ngb, unravelled the existence of a storage site for O2 in Ngb which coincides with Xe-III, a previously described docking site for xenon or krypton. Notably, no other secondary sites were observed under our experimental conditions
Iris type:
11.04 Banca dati
Keywords:
CO photolysis; neuroglobin; oxygen binding; protein structure
List of contributors:
Vallone, Beatrice; Savino, Carmelinda
Authors of the University:
SAVINO CARMELINDA
Handle:
https://iris.cnr.it/handle/20.500.14243/361823
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http://www.rcsb.org/structure/6I3T
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