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KCNE5 Induces Time- and Voltage-Dependent Modulation of the KCNQ1 Current
- Source :
- University of Copenhagen
- Publication Year :
- 2002
- Publisher :
- Elsevier BV, 2002.
-
Abstract
- The function of the KCNE5 (KCNE1-like) protein has not previously been described. Here we show that KCNE5 induces both a time- and voltage-dependent modulation of the KCNQ1 current. Interaction of the KCNQ1 channel with KCNE5 shifted the voltage activation curve of KCNQ1 by more than 140 mV in the positive direction. The activation threshold of the KCNQ1+KCNE5 complex was +40 mV and the midpoint of activation was +116 mV. The KCNQ1+KCNE5 current activated slowly and deactivated rapidly as compared to the KCNQ1+KCNE1 at 22 degrees C; however, at physiological temperature, the activation time constant of the KCNQ1+KCNE5 current decreased fivefold, thus exceeding the activation rate of the KCNQ1+KCNE1 current. The KCNE5 subunit is specific for the KCNQ1 channel, as none of other members of the KCNQ-family or the human ether a-go-go related channel (hERG1) was affected by KCNE5. Four residues in the transmembrane domain of the KCNE5 protein were found to be important for the control of the voltage-dependent activation of the KCNQ1 current. We speculate that since KCNE5 is expressed in cardiac tissue it may here along with the KCNE1 beta-subunit regulate KCNQ1 channels. It is possible that KCNE5 shapes the I(Ks) current in certain parts of the mammalian heart.
- Subjects :
- Potassium Channels
Time Factors
endocrine system diseases
Protein subunit
Molecular Sequence Data
Analytical chemistry
Biophysics
Action Potentials
CHO Cells
Biophysical Phenomena
Xenopus laevis
Cricetinae
Animals
Amino Acid Sequence
Ions
KCNQ Potassium Channels
biology
urogenital system
Chemistry
Temperature
Time constant
KCNE3
KCNE4
Potassium channel
Protein Structure, Tertiary
Electrophysiology
Kinetics
Transmembrane domain
Potassium Channels, Voltage-Gated
KCNQ1 Potassium Channel
biology.protein
Current (fluid)
Research Article
Subjects
Details
- ISSN :
- 00063495
- Volume :
- 83
- Issue :
- 4
- Database :
- OpenAIRE
- Journal :
- Biophysical Journal
- Accession number :
- edsair.doi.dedup.....6f69ef6fce72c3d3660609868fdc0325
- Full Text :
- https://doi.org/10.1016/s0006-3495(02)73961-1