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A Small Conductance Calcium-Activated K<sup>+</sup> Channel in C. elegans, KCNL-2, Plays a Role in the Regulation of the Rate of Egg-Laying
Authors
A Calixto
A Singson
+43 more
AC Gerlach
Cavita K. Chotoo
CC Mello
CI Bargmann
Cliff J. Luke
CM Fanger
CT Bond
D Fernández de Sevilla
Daniel C. Devor
ER Sawin
F Simmer
Gary A. Silverman
GM Herrera
IA Bany
J Kim
J Kyte
J Wolfart
JE Mendel
JG White
Jill C Bettinger
JJ Moresco
JP Adelman
JT Walter
KS Thorneloe
L Ségalat
M Dimitriadi
M Köhler
M Stocker
M Szatanik
M Zhang
MJ Miller
MR Klass
MR Koelle
MS Taylor
N Ringstad
PL Larsen
RM Empson
S Brenner
S Brähler
SE Bowden
TM Ishii
VG Shakkottai
WJ Joiner
Publication date
1 September 2013
Publisher
'Public Library of Science (PLoS)'
Doi
Cite
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on
PubMed
Abstract
In the nervous system of mice, small conductance calcium-activated potassium (SK) channels function to regulate neuronal excitability through the generation of a component of the medium afterhyperpolarization that follows action potentials. In humans, irregular action potential firing frequency underlies diseases such as ataxia, epilepsy, schizophrenia and Parkinson's disease. Due to the complexity of studying protein function in the mammalian nervous system, we sought to characterize an SK channel homologue, KCNL-2, in C. elegans, a genetically tractable system in which the lineage of individual neurons was mapped from their early developmental stages. Sequence analysis of the KCNL-2 protein reveals that the six transmembrane domains, the potassium-selective pore and the calmodulin binding domain are highly conserved with the mammalian homologues. We used widefield and confocal fluorescent imaging to show that a fusion construct of KCNL-2 with GFP in transgenic lines is expressed in the nervous system of C. elegans. We also show that a KCNL-2 null strain, kcnl-2(tm1885), demonstrates a mild egg-laying defective phenotype, a phenotype that is rescued in a KCNL-2-dependent manner. Conversely, we show that transgenic lines that overexpress KCNL-2 demonstrate a hyperactive egg-laying phenotype. In this study, we show that the vulva of transgenic hermaphrodites is highly innervated by neuronal processes and by the VC4 and VC5 neurons that express GFP-tagged KCNL-2. We propose that KCNL-2 functions in the nervous system of C. elegans to regulate the rate of egg-laying. © 2013 Chotoo et al
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