Rat hypocretin/orexin neurons are maintained in a depolarized state by TRPC channels.

In a previous study we proposed that the depolarized state of the wake-promoting hypocretin/orexin (hcrt/orx) neurons was independent of synaptic inputs as it persisted in tetrodotoxin and low calcium/high magnesium solutions. Here we show first that these cells are hyperpolarized when external sodi...

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Main Authors: Vesna Cvetkovic-Lopes, Emmanuel Eggermann, Aaron Uschakov, Jeremy Grivel, Laurence Bayer, Barbara E Jones, Mauro Serafin, Michel Mühlethaler
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3002943?pdf=render
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spelling doaj-b384efe9bd4a42b1b7ea836f6bb223b52020-11-25T02:00:17ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-01-01512e1567310.1371/journal.pone.0015673Rat hypocretin/orexin neurons are maintained in a depolarized state by TRPC channels.Vesna Cvetkovic-LopesEmmanuel EggermannAaron UschakovJeremy GrivelLaurence BayerBarbara E JonesMauro SerafinMichel MühlethalerIn a previous study we proposed that the depolarized state of the wake-promoting hypocretin/orexin (hcrt/orx) neurons was independent of synaptic inputs as it persisted in tetrodotoxin and low calcium/high magnesium solutions. Here we show first that these cells are hyperpolarized when external sodium is lowered, suggesting that non-selective cation channels (NSCCs) could be involved. As canonical transient receptor channels (TRPCs) are known to form NSCCs, we looked for TRPCs subunits using single-cell RT-PCR and found that TRPC6 mRNA was detectable in a small minority, TRPC1, TRPC3 and TRPC7 in a majority and TRPC4 and 5 in the vast majority (∼90%) of hcrt/orx neurons. Using intracellular applications of TRPC antibodies against subunits known to form NSCCs, we then found that only TRPC5 antibodies elicited an outward current, together with hyperpolarization and inhibition of the cells. These effects were blocked by co-application of a TRPC5 antigen peptide. Voltage-clamp ramps in the presence or absence of TRPC5 antibodies indicated the presence of a current with a reversal potential close to -15 mV. Application of the non-selective TRPC channel blocker, flufenamic acid, had a similar effect, which could be occluded in cells pre-loaded with TRPC5 antibodies. Finally, using the same TRPC5 antibodies we found that most hcrt/orx cells show immunostaining for the TRPC5 subunit. These results suggest that hcrt/orx neurons are endowed with a constitutively active non-selective cation current which depends on TRPC channels containing the TRPC5 subunit and which is responsible for the depolarized and active state of these cells.http://europepmc.org/articles/PMC3002943?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Vesna Cvetkovic-Lopes
Emmanuel Eggermann
Aaron Uschakov
Jeremy Grivel
Laurence Bayer
Barbara E Jones
Mauro Serafin
Michel Mühlethaler
spellingShingle Vesna Cvetkovic-Lopes
Emmanuel Eggermann
Aaron Uschakov
Jeremy Grivel
Laurence Bayer
Barbara E Jones
Mauro Serafin
Michel Mühlethaler
Rat hypocretin/orexin neurons are maintained in a depolarized state by TRPC channels.
PLoS ONE
author_facet Vesna Cvetkovic-Lopes
Emmanuel Eggermann
Aaron Uschakov
Jeremy Grivel
Laurence Bayer
Barbara E Jones
Mauro Serafin
Michel Mühlethaler
author_sort Vesna Cvetkovic-Lopes
title Rat hypocretin/orexin neurons are maintained in a depolarized state by TRPC channels.
title_short Rat hypocretin/orexin neurons are maintained in a depolarized state by TRPC channels.
title_full Rat hypocretin/orexin neurons are maintained in a depolarized state by TRPC channels.
title_fullStr Rat hypocretin/orexin neurons are maintained in a depolarized state by TRPC channels.
title_full_unstemmed Rat hypocretin/orexin neurons are maintained in a depolarized state by TRPC channels.
title_sort rat hypocretin/orexin neurons are maintained in a depolarized state by trpc channels.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-01-01
description In a previous study we proposed that the depolarized state of the wake-promoting hypocretin/orexin (hcrt/orx) neurons was independent of synaptic inputs as it persisted in tetrodotoxin and low calcium/high magnesium solutions. Here we show first that these cells are hyperpolarized when external sodium is lowered, suggesting that non-selective cation channels (NSCCs) could be involved. As canonical transient receptor channels (TRPCs) are known to form NSCCs, we looked for TRPCs subunits using single-cell RT-PCR and found that TRPC6 mRNA was detectable in a small minority, TRPC1, TRPC3 and TRPC7 in a majority and TRPC4 and 5 in the vast majority (∼90%) of hcrt/orx neurons. Using intracellular applications of TRPC antibodies against subunits known to form NSCCs, we then found that only TRPC5 antibodies elicited an outward current, together with hyperpolarization and inhibition of the cells. These effects were blocked by co-application of a TRPC5 antigen peptide. Voltage-clamp ramps in the presence or absence of TRPC5 antibodies indicated the presence of a current with a reversal potential close to -15 mV. Application of the non-selective TRPC channel blocker, flufenamic acid, had a similar effect, which could be occluded in cells pre-loaded with TRPC5 antibodies. Finally, using the same TRPC5 antibodies we found that most hcrt/orx cells show immunostaining for the TRPC5 subunit. These results suggest that hcrt/orx neurons are endowed with a constitutively active non-selective cation current which depends on TRPC channels containing the TRPC5 subunit and which is responsible for the depolarized and active state of these cells.
url http://europepmc.org/articles/PMC3002943?pdf=render
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