Title : Exploring the Potential Roles of Band 3 and Aquaporin-1 in Blood CO2 Transport-Inspired by Comparative Studies of Glycophorin B-A-B Hybrid Protein GP.Mur.

Pub. Date : 2018

PMID : 29971013






6 Functional Relationships(s)
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Compound Name
Protein Name
Organism
1 Recently, using carbonic anhydrase II (CAII)-filled erythrocyte vesicles, AQP1 has been demonstrated to transport water for the CAII-mediated reaction, CO2(g) + H2O HCO3-(aq) + H+(aq). Water carbonic anhydrase 2 Homo sapiens
2 Recently, using carbonic anhydrase II (CAII)-filled erythrocyte vesicles, AQP1 has been demonstrated to transport water for the CAII-mediated reaction, CO2(g) + H2O HCO3-(aq) + H+(aq). Water carbonic anhydrase 2 Homo sapiens
3 Recently, using carbonic anhydrase II (CAII)-filled erythrocyte vesicles, AQP1 has been demonstrated to transport water for the CAII-mediated reaction, CO2(g) + H2O HCO3-(aq) + H+(aq). Water carbonic anhydrase 2 Homo sapiens
4 Recently, using carbonic anhydrase II (CAII)-filled erythrocyte vesicles, AQP1 has been demonstrated to transport water for the CAII-mediated reaction, CO2(g) + H2O HCO3-(aq) + H+(aq). Water carbonic anhydrase 2 Homo sapiens
5 Recently, using carbonic anhydrase II (CAII)-filled erythrocyte vesicles, AQP1 has been demonstrated to transport water for the CAII-mediated reaction, CO2(g) + H2O HCO3-(aq) + H+(aq). Water carbonic anhydrase 2 Homo sapiens
6 Recently, using carbonic anhydrase II (CAII)-filled erythrocyte vesicles, AQP1 has been demonstrated to transport water for the CAII-mediated reaction, CO2(g) + H2O HCO3-(aq) + H+(aq). Water carbonic anhydrase 2 Homo sapiens