The cortical collecting duct (CCD) plays a key role in regulated K(+) secretion, which is mediated mainly through renal outer medullary K(+) (ROMK) channels located in the apical membrane. However, the mechanisms of the regulation of urinary K(+) excretion with regard to K(+) balance are not well known. We took advantage of a recently established mouse CCD cell line (mCCD(cl1)) to investigate the regulation of K(+) secretion by mineralocorticoid and K(+) concentration. We show that this cell line expresses ROMK mRNA and a barium-sensitive K(+) conductance in its apical membrane. As this conductance is sensitive to tertiapin-Q, with an apparent affinity of 6 nM, and to intracellular acidification, it is probably mediated by ROMK. Overnight e...
Potassium (K+) secretion by kidney tubule cells is central to electrolyte homeostasis in mammals. In...
Mineralocorticoid effect on K+ permeability of the rabbit cortical collecting tubule. Mineralocortic...
BK channels are expressed in intercalated cells (ICs) and principal cells (PCs) in the cortical coll...
Aldosterone and potassium secretion by the cortical collecting duct.BackgroundAldosterone has been i...
Mineralocorticoids (DOCA) are known to increase Na(\u27+) absorption and K(\u27+) secretion in the r...
The kidney is the major regulator of potassium homeostasis. In addition to the ROMK channels, large ...
Aldosterone binds to the mineralocorticoid receptor (MR) and increases renal Na+ reabsorption via up...
Aldosterone-independent mechanisms may contribute to K(+) homeostasis. We studied aldosterone syntha...
Principal cells in the collecting ducts of the kidney are the major site of regulated K+ excretion. ...
Nongenomic effects of aldosterone on Ca2+ in M-1 cortical collecting duct cells.BackgroundAldosteron...
The cortical collecting duct of the mammalian kidney is the most important nephron segment for the f...
An extracellular K+ concentration in a narrow range is critical for the normal function of the heart...
International audienceTissue kallikrein (TK) is a serine protease synthetized in renal tubular cells...
International audienceK(+) channels in the basolateral membrane of mouse cortical collecting duct (C...
Potassium (K+) secretion by kidney tubule cells is central to electrolyte homeostasis in mammals. In...
Potassium (K+) secretion by kidney tubule cells is central to electrolyte homeostasis in mammals. In...
Mineralocorticoid effect on K+ permeability of the rabbit cortical collecting tubule. Mineralocortic...
BK channels are expressed in intercalated cells (ICs) and principal cells (PCs) in the cortical coll...
Aldosterone and potassium secretion by the cortical collecting duct.BackgroundAldosterone has been i...
Mineralocorticoids (DOCA) are known to increase Na(\u27+) absorption and K(\u27+) secretion in the r...
The kidney is the major regulator of potassium homeostasis. In addition to the ROMK channels, large ...
Aldosterone binds to the mineralocorticoid receptor (MR) and increases renal Na+ reabsorption via up...
Aldosterone-independent mechanisms may contribute to K(+) homeostasis. We studied aldosterone syntha...
Principal cells in the collecting ducts of the kidney are the major site of regulated K+ excretion. ...
Nongenomic effects of aldosterone on Ca2+ in M-1 cortical collecting duct cells.BackgroundAldosteron...
The cortical collecting duct of the mammalian kidney is the most important nephron segment for the f...
An extracellular K+ concentration in a narrow range is critical for the normal function of the heart...
International audienceTissue kallikrein (TK) is a serine protease synthetized in renal tubular cells...
International audienceK(+) channels in the basolateral membrane of mouse cortical collecting duct (C...
Potassium (K+) secretion by kidney tubule cells is central to electrolyte homeostasis in mammals. In...
Potassium (K+) secretion by kidney tubule cells is central to electrolyte homeostasis in mammals. In...
Mineralocorticoid effect on K+ permeability of the rabbit cortical collecting tubule. Mineralocortic...
BK channels are expressed in intercalated cells (ICs) and principal cells (PCs) in the cortical coll...