Literature DB >> 21692188

Expression and function of KCNQ channels in larval zebrafish.

Sally W Chege1, Gabriela A Hortopan, Matthew T Dinday, Scott C Baraban.   

Abstract

Members of the K(v)7 family generate a subthreshold potassium current, termed M-current, that regulates the excitability of principal central neurons. Mutations in two members of this family, K(v)7.2 (KCNQ2) and K(v)7.3 (KCNQ3) are associated with a neurological disorder known as benign familial neonatal convulsion (BFNC). Despite their importance in normal and pathological brain function, developmental expression and function of these channels remains relatively unexplored. Here, we examined the temporal expression of K(v)7 channel subunits in zebrafish larvae using a real-time quantitative PCR approach. Spatial expression in the larval zebrafish brain was assessed using whole-mount in situ hybridization. The mRNA for three members of the K(v)7 family (KCNQ2, 3 and 5) is reported in zebrafish between two and seven days post-fertilization (dpf). Using electrophysiological techniques, we show that inhibitors of K(v)7 channels (linopirdine and XE991) induce burst discharge activity in immature zebrafish between 3 and 7 dpf. This abnormal electrical activity is blocked by a K(v)7 channel opener (retigabine) and was also shown to evoke convulsive behaviors in freely swimming zebrafish. Using morpholino oligonucleotides directed against KCNQ3, we confirmed a role for KCNQ channels in generation of electrical burst discharges. These results indicate that functional K(v)7 channels are expressed in the larval zebrafish nervous system and could play a direct role in generation of seizure activity.
Copyright © 2011 Wiley Periodicals, Inc.

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Year:  2012        PMID: 21692188     DOI: 10.1002/dneu.20937

Source DB:  PubMed          Journal:  Dev Neurobiol        ISSN: 1932-8451            Impact factor:   3.964


  13 in total

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7.  Assessing the Value of the Zebrafish Conditioned Place Preference Model for Predicting Human Abuse Potential.

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8.  Drug screening in Scn1a zebrafish mutant identifies clemizole as a potential Dravet syndrome treatment.

Authors:  Scott C Baraban; Matthew T Dinday; Gabriela A Hortopan
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9.  Kcnq1-5 (Kv7.1-5) potassium channel expression in the adult zebrafish.

Authors:  Calvin Wu; Kanishk Sharma; Kyle Laster; Mohamed Hersi; Christina Torres; Thomas J Lukas; Ernest J Moore
Journal:  BMC Physiol       Date:  2014-02-20

10.  A zebrafish-centric approach to antiepileptic drug development.

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Journal:  Dis Model Mech       Date:  2021-07-07       Impact factor: 5.758

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