Literature DB >> 16439665

Vasa recta pericytes express a strong inward rectifier K+ conductance.

Chunhua Cao1, Jae Hwan Goo, Whaseon Lee-Kwon, Thomas L Pallone.   

Abstract

Strong inward rectifier potassium channels are expressed by some vascular smooth muscle cells and facilitate K+-induced hyperpolarization. Using whole cell patch clamp of isolated descending vasa recta (DVR), we tested whether strong inward rectifier K+ currents are present in smooth muscle and pericytes. Increasing extracellular K+ from 5 to 50 and 140 mmol/l induced inward rectifying currents. Those currents were Ba2+ sensitive and reversed at the K+ equilibrium potential imposed by the electrode and extracellular buffers. Ba2+ binding constants in symmetrical K+ varied between 0.24 and 24 micromol/l at -150 and -20 mV, respectively. Ba2+ blockade was time and voltage dependent. Extracellular Cs+ also blocked the inward currents with binding constants between 268 and 4,938 micromol/l at -150 and -50 mV, respectively. Ba2+ (30 micromol/l) and ouabain (1 mmol/l) depolarized pericytes by an average of 11 and 24 mV, respectively. Elevation of extracellular K+ from 5 to 10 mmol/l hyperpolarized pericytes by 6 mV. That hyperpolarization was reversed by Ba2+ (30 micromol/l). We conclude that strong inward rectifier K+ channels and Na+-K+-ATPase contribute to resting potential and that KIR channels can mediate K+-induced hyperpolarization of DVR pericytes.

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Year:  2006        PMID: 16439665     DOI: 10.1152/ajpregu.00877.2005

Source DB:  PubMed          Journal:  Am J Physiol Regul Integr Comp Physiol        ISSN: 0363-6119            Impact factor:   3.619


  14 in total

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4.  Descending vasa recta endothelial cells and pericytes form mural syncytia.

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5.  Intrinsic nitric oxide and superoxide production regulates descending vasa recta contraction.

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9.  Inward rectifier K(+) currents and Kir2.1 expression in renal afferent and efferent arterioles.

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Review 10.  Physiological role of inward rectifier K(+) channels in vascular smooth muscle cells.

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Journal:  Pflugers Arch       Date:  2008-04-25       Impact factor: 3.657

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