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October 1, 2001Journal of Neuroscience573 citationsOpen Access

CNS Distribution of Members of the Two-Pore-Domain (KCNK) Potassium Channel Family

ETEdmund M. TalleyGSGuillermo SolórzanoQLQiubo Lei

Key Result

In situ hybridization revealed widespread and differential distribution of mRNA encoding six two-pore-domain potassium channels (TASK-1, TASK-3, TREK-1, TREK-2, TRAAK, TWIK-1) in the rat and mouse CNS.

Structured PICO

P
Population
Adult male rats (200–350 gm) from Wistar and Sprague Dawley strains, and C57BL/6J mice
I
Intervention
In situ hybridization to map mRNA distribution of two-pore-domain K(+) channels (TASK-1, TASK-2, TASK-3, TREK-1, TREK-2, TRAAK, TWIK-1)
O
Outcome
CNS distribution of mRNA encoding seven two-pore-domain K(+) channel family members

The differential expression of two-pore-domain K+ channel genes likely contributes to characteristic excitability properties in distinct populations of neurons.

Limitations

  • Ability to compare levels of different mRNA species is limited due to factors like relative hybridization efficiencies of different probes.

Abstract

Two-pore-domain potassium (K(+)) channels are substrates for resting K(+) currents in neurons. They are major targets for endogenous modulators, as well as for clinically important compounds such as volatile anesthetics. In the current study, we report on the CNS distribution in the rat and mouse of mRNA encoding seven two-pore-domain K(+) channel family members: TASK-1 (KCNK3), TASK-2 (KCNK5), TASK-3 (KCNK9), TREK-1 (KCNK2), TREK-2 (KCNK10), TRAAK (KCNK4), and TWIK-1 (KCNK1). All of these genes were expressed in dorsal root ganglia, and for all of the genes except TASK-2, there was a differential distribution in the CNS. For TASK-1, highest mRNA accumulation was seen in the cerebellum and somatic motoneurons. TASK-3 was much more widely distributed, with robust expression in all brain regions, with particularly high expression in somatic motoneurons, cerebellar granule neurons, the locus ceruleus, and raphe nuclei and in various nuclei of the hypothalamus. TREK-1 was highest in the striatum and in parts of the cortex (layer IV) and hippocampus (CA2 pyramidal neurons). mRNA for TRAAK also was highest in the cortex, whereas expression of TREK-2 was primarily restricted to the cerebellar granule cell layer. There was widespread distribution of TWIK-1, with highest levels in the cerebellar granule cell layer, thalamic reticular nucleus, and piriform cortex. The differential expression of each of these genes likely contributes to characteristic excitability properties in distinct populations of neurons, as well as to diversity in their susceptibility to modulation.

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Cite This Study

Talley et al. (2001) studied this question. In situ hybridization revealed widespread and differential distribution of mRNA encoding six two-pore-domain potassium channels (TASK-1, TASK-3, TREK-1, TREK-2, TRAAK, TWIK-1) in the rat and mouse CNS.

synapsesocial.com/papers/6a14e595cfc8ed0661c1acd6https://doi.org/10.1523/jneurosci.21-19-07491.2001
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