1. Comparison of K-Cl Cotransport Expression in High and Low K Dog Erythrocytes
- Author
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Kazunari Higa, Hiroshi Fujise, Shin Hisamatsu, and Hideharu Ochiai
- Subjects
inorganic chemicals ,medicine.medical_specialty ,Erythrocytes ,Pump activity ,digestive system ,environment and public health ,General Biochemistry, Genetics and Molecular Biology ,chemistry.chemical_compound ,Dogs ,Chlorides ,Western blot ,Internal medicine ,medicine ,Animals ,Nitrite ,Ouabain ,Cell Size ,Dose-Response Relationship, Drug ,Sodium Nitrite ,Symporters ,General Veterinary ,medicine.diagnostic_test ,Reverse Transcriptase Polymerase Chain Reaction ,urogenital system ,Chemistry ,General Medicine ,Rubidium ,Endocrinology ,Potassium ,Animal Science and Zoology ,Cotransporter ,hormones, hormone substitutes, and hormone antagonists - Abstract
K-Cl cotransport plays a crucial role in regulatory volume decrease of erythrocytes. K-Cl cotransport activities in dog erythrocytes with an inherited high Na-K pump activity (HK) and normal erythrocytes (LK) were compared. Nitrite (NO(2)) stimulated K-Cl cotransport activity in HK cells around 14-fold at 2.4 mM, and it also increased the Km value of this cotransporter. Real-time PCR and western blot analysis revealed that K-Cl cotransporter 1 was dominant, and that the quantity of K-Cl cotransporter 1 protein was comparable between HK and LK erythrocytes. These results suggest that the difference in cotransport activity was not caused by the amount of K-Cl cotransport protein but by a difference in the regulation system, which is susceptible to oxidant.
- Published
- 2006
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