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Published byPierce Cobb Modified over 9 years ago
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Myoglobin & Hemoglobin
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Heme proteins Supply of oxygen – Oxidative metabolism Myoglobin – Monomeric – protein of red muscle – Stores oxygen
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O 2 storage O 2 transport
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Hemoglobin – Tetrameric Cooperative interactions 2,3-bisphosphoglycerate (BPG) promotes the – Stabilize the structure of deoxyhemoglobin Heme & ferrous iron
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Heme
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Myoglobin Rich in α Helix 153-aminoacyl residue MW 17,000 75% in eight right-handed – Helices A–H Surface of myoglobin is polar Interior contains only nonpolar – Leu, Val, Phe,
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Myoglobin Histidines F8 & E7 – Roles in Oxygen binding – Proximal histidine, His F8 The fifth coordination position of the iron O 2 occupies the sixth coordination position
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A model of myoglobin
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Hemoglobin Tetrameric – α 2 β 2 (HbA) – α 2 γ 2 (HbF) – α 2 S 2 (HbS) – α 2 δ 2 (HbA 2 ) the α polypeptide – Seven helical regions bind four molecules of O 2 per tetramer
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Cooperative binding – A molecule of O 2 binds to a hemoglobin tetramer more readily if other O 2 molecules are already bound
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P 50 – expresses the relative affinities of different hemoglobins for oxygen – The partial pressure of O 2 that half-saturates Hb P 50 for HbA and fetal HbF – 26 and 20 mm Hg – HbF,High affinity for O 2
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ζ 2 ε 2 fetus Hb
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Developmental pattern of the quaternary structure of fetal and newborn hemoglobins
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Oxygenation of hemoglobin is accompanied by large conformational changes binding of the first O 2 Iron motion rupture of salt bridges T (taut) state to the R (relaxed) state – Low affinity and high-affinity conformations
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The iron atom moves into the plane of the heme on oxygenation. Histidine F8 and its associated residues are pulled along with the iron atom.
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The transition between the two structures is influenced by protons, carbon dioxide, chloride, and BPG; the higher their concentration, the more oxygen must be bound to trigger the transition.
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