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Cytoglobin conformations and disulfide bond formation

Authors :
Luc Moens
Sylvia Dewilde
Chantal Celier
Michael C. Marden
Laurent Kiger
Brian N. Green
Cédric Chauvierre
Christophe Lechauve
Source :
FEBS Journal. 277:2696-2704
Publication Year :
2010
Publisher :
Wiley, 2010.

Abstract

The oligomeric state and kinetics of ligand binding were measured for wild-type cytoglobin. Cytoglobin has the classical globin fold, with an extension at each extremity of about 20 residues. The extended length of cytoglobin leads to an ambiguous interpretation of its oligomeric state. Although the hydrodynamic diameter corresponds to that of a dimer, it displays a mass of a single subunit, indicating a monomeric form. Thus, rather than displaying a compact globular form, cytoglobin behaves hydrodynamically like a tightly packed globin with a greater flexibility of the N- and C-terminal regions. Cytoglobin displays biphasic kinetics after the photolysis of CO, as a result of competition with an internal protein ligand, the E7 distal histidine. An internal disulfide bond may form which modifies the rate of dissociation of the distal histidine and apparently leads to different cytoglobin conformations, which may affect the observed oxygen affinity by an order of magnitude.

Details

ISSN :
1742464X
Volume :
277
Database :
OpenAIRE
Journal :
FEBS Journal
Accession number :
edsair.doi...........383aec700db21c86ace522562a6e896f