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Functional Expression Profile of Voltage-Gated K+ Channel Subunits in Rat Small Mesenteric Arteries

Overview of attention for article published in Cell Biochemistry and Biophysics, November 2015
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Title
Functional Expression Profile of Voltage-Gated K+ Channel Subunits in Rat Small Mesenteric Arteries
Published in
Cell Biochemistry and Biophysics, November 2015
DOI 10.1007/s12013-015-0715-4
Pubmed ID
Authors

Robert H. Cox, Samantha Fromme

Abstract

Multiple K v channel complexes contribute to total K v current in numerous cell types and usually subserve different physiological functions. Identifying the complete compliment of functional K v channel subunits in cells is a prerequisite to understanding regulatory function. It was the goal of this work to determine the complete K v subunit compliment that contribute to functional K v currents in rat small mesenteric artery (SMA) myocytes as a prelude to studying channel regulation. Using RNA prepared from freshly dispersed myocytes, high levels of K v 1.2, 1.5, and 2.1 and lower levels of K v 7.4 α-subunit expressions were demonstrated by quantitative PCR and confirmed by Western blotting. Selective inhibitors correolide (K v 1; COR), stromatoxin (K v 2.1; ScTx), and linopirdine (K v 7.4; LINO) decreased K v current at +40 mV in SMA by 46 ± 4, 48 ± 4, and 6.5 ± 2 %, respectively, and K v current in SMA was insensitive to α-dendrotoxin. Contractions of SMA segments pretreated with 100 nmol/L phenylephrine were enhanced by 27 ± 3, 30 ± 8, and 7 ± 3 % of the response to 120 mmol/L KCl by COR, ScTX, and LINO, respectively. The presence of K v 6.1, 9.3, β1.1, and β1.2 was demonstrated by RT-PCR using myocyte RNA with expressions of K vβ1.2 and K v 9.3 about tenfold higher than K vβ1.1 and K v 6.1, respectively. Selective inhibitors of K v 1.3, 3.4, 4.1, and 4.3 channels also found at the RNA and/or protein level had no significant effect on K v current or contraction. These results suggest that K v current in rat SMA myocytes are dominated equally by two major components consisting of K v 1.2-1.5-β1.2 and K v 2.1-9.3 channels along with a smaller contribution from K v 7.4 channels but differences in voltage dependence of activation allows all three to provide significant contributions to SMA function at physiological voltages.

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Geographical breakdown

Country Count As %
Unknown 11 100%

Demographic breakdown

Readers by professional status Count As %
Student > Bachelor 2 18%
Professor 2 18%
Lecturer 1 9%
Student > Ph. D. Student 1 9%
Student > Master 1 9%
Other 1 9%
Unknown 3 27%
Readers by discipline Count As %
Pharmacology, Toxicology and Pharmaceutical Science 2 18%
Medicine and Dentistry 2 18%
Agricultural and Biological Sciences 2 18%
Biochemistry, Genetics and Molecular Biology 1 9%
Nursing and Health Professions 1 9%
Other 0 0%
Unknown 3 27%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 11 June 2016.
All research outputs
#20,333,181
of 22,877,793 outputs
Outputs from Cell Biochemistry and Biophysics
#563
of 911 outputs
Outputs of similar age
#211,264
of 252,509 outputs
Outputs of similar age from Cell Biochemistry and Biophysics
#5
of 7 outputs
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