Journal of the American Chemical Society · 2004 · 66 citations · 9 references
BiochemistryProtein FoldingHeme Pocket DueHuman NeuroglobinHuman CytoglobinDisulfide Bridge FormationMolecular BiologyNatural SciencesHeme TraffickingDisulfide BridgeCytoskeletonHeme SignalingHeme HomeostasisMedicineRedox BiologyStructural BiologyStructural Change
Human neuroglobin (hNgb) and human cytoglobin (hCygb), two recently discovered members of the vertebrate globin family, are known to be able to form an intramolecular disulfide bridge. Using electron paramagnetic resonance (EPR), we show that formation of a disulfide bridge in ferric hNgb causes a considerable change in the heme pocket structure, whereas this is not so clear for ferric hCygb. The structural results can be related nicely to earlier histidine and dioxygen affinity studies of the ferrous proteins.
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A vertebrate globin expressed in the brain
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