In addition to O, binding, changes in other chemical conditions can result in hemoglobin changes. pH is one of those factors. It can be understood by reaction #1. Red blood cells have the enzyme...


In addition to O, binding, changes in other chemical conditions can result in hemoglobin changes.<br>pH is one of those factors. It can be understood by reaction #1. Red blood cells have the enzyme<br>Carbonic Anhydrase which catalyzes reaction #2. Using the two reactions explain how pH contributes<br>to the transfer of O2 from the lungs to the tissues.<br>H-Hb* + O2 Hb-O2 + H*<br>Reaction #1<br>CO2(aq) + H2O= H* + HCO3<br>Reaction #2<br>

Extracted text: In addition to O, binding, changes in other chemical conditions can result in hemoglobin changes. pH is one of those factors. It can be understood by reaction #1. Red blood cells have the enzyme Carbonic Anhydrase which catalyzes reaction #2. Using the two reactions explain how pH contributes to the transfer of O2 from the lungs to the tissues. H-Hb* + O2 Hb-O2 + H* Reaction #1 CO2(aq) + H2O= H* + HCO3 Reaction #2

Jun 11, 2022
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