Cargando…

Regulation of Axonal HCN1 Trafficking in Perforant Path Involves Expression of Specific TRIP8b Isoforms

The functions of HCN channels in neurons depend critically on their subcellular localization, requiring fine-tuned machinery that regulates subcellular channel trafficking. Here we provide evidence that regulatory mechanisms governing axonal HCN channel trafficking involve association of the channel...

Descripción completa

Detalles Bibliográficos
Autores principales: Wilkars, Wiebke, Liu, Zhiqiang, Lewis, Alan S., Stoub, Travis R., Ramos, Elena M., Brandt, Nicola, Nicholson, Daniel A., Chetkovich, Dane M., Bender, Roland A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3283722/
https://www.ncbi.nlm.nih.gov/pubmed/22363812
http://dx.doi.org/10.1371/journal.pone.0032181
_version_ 1782224244410679296
author Wilkars, Wiebke
Liu, Zhiqiang
Lewis, Alan S.
Stoub, Travis R.
Ramos, Elena M.
Brandt, Nicola
Nicholson, Daniel A.
Chetkovich, Dane M.
Bender, Roland A.
author_facet Wilkars, Wiebke
Liu, Zhiqiang
Lewis, Alan S.
Stoub, Travis R.
Ramos, Elena M.
Brandt, Nicola
Nicholson, Daniel A.
Chetkovich, Dane M.
Bender, Roland A.
author_sort Wilkars, Wiebke
collection PubMed
description The functions of HCN channels in neurons depend critically on their subcellular localization, requiring fine-tuned machinery that regulates subcellular channel trafficking. Here we provide evidence that regulatory mechanisms governing axonal HCN channel trafficking involve association of the channels with specific isoforms of the auxiliary subunit TRIP8b. In the medial perforant path, which normally contains HCN1 channels in axon terminals in immature but not in adult rodents, we found axonal HCN1 significantly increased in adult mice lacking TRIP8b (TRIP8b(−/−)). Interestingly, adult mice harboring a mutation that results in expression of only the two most abundant TRIP8b isoforms (TRIP8b[1b/2](−/−)) exhibited an HCN1 expression pattern similar to wildtype mice, suggesting that presence of one or both of these isoforms (TRIP8b(1a), TRIP8b(1a-4)) prevents HCN1 from being transported to medial perforant path axons in adult mice. Concordantly, expression analyses demonstrated a strong increase of expression of both TRIP8b isoforms in rat entorhinal cortex with age. However, when overexpressed in cultured entorhinal neurons of rats, TRIP8b(1a), but not TRIP8b(1a-4), altered substantially the subcellular distribution of HCN1 by promoting somatodendritic and reducing axonal expression of the channels. Taken together, we conclude that TRIP8b isoforms are important regulators of HCN1 trafficking in entorhinal neurons and that the alternatively-spliced isoform TRIP8b(1a) could be responsible for the age-dependent redistribution of HCN channels out of perforant path axon terminals.
format Online
Article
Text
id pubmed-3283722
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-32837222012-02-23 Regulation of Axonal HCN1 Trafficking in Perforant Path Involves Expression of Specific TRIP8b Isoforms Wilkars, Wiebke Liu, Zhiqiang Lewis, Alan S. Stoub, Travis R. Ramos, Elena M. Brandt, Nicola Nicholson, Daniel A. Chetkovich, Dane M. Bender, Roland A. PLoS One Research Article The functions of HCN channels in neurons depend critically on their subcellular localization, requiring fine-tuned machinery that regulates subcellular channel trafficking. Here we provide evidence that regulatory mechanisms governing axonal HCN channel trafficking involve association of the channels with specific isoforms of the auxiliary subunit TRIP8b. In the medial perforant path, which normally contains HCN1 channels in axon terminals in immature but not in adult rodents, we found axonal HCN1 significantly increased in adult mice lacking TRIP8b (TRIP8b(−/−)). Interestingly, adult mice harboring a mutation that results in expression of only the two most abundant TRIP8b isoforms (TRIP8b[1b/2](−/−)) exhibited an HCN1 expression pattern similar to wildtype mice, suggesting that presence of one or both of these isoforms (TRIP8b(1a), TRIP8b(1a-4)) prevents HCN1 from being transported to medial perforant path axons in adult mice. Concordantly, expression analyses demonstrated a strong increase of expression of both TRIP8b isoforms in rat entorhinal cortex with age. However, when overexpressed in cultured entorhinal neurons of rats, TRIP8b(1a), but not TRIP8b(1a-4), altered substantially the subcellular distribution of HCN1 by promoting somatodendritic and reducing axonal expression of the channels. Taken together, we conclude that TRIP8b isoforms are important regulators of HCN1 trafficking in entorhinal neurons and that the alternatively-spliced isoform TRIP8b(1a) could be responsible for the age-dependent redistribution of HCN channels out of perforant path axon terminals. Public Library of Science 2012-02-21 /pmc/articles/PMC3283722/ /pubmed/22363812 http://dx.doi.org/10.1371/journal.pone.0032181 Text en Wilkars et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wilkars, Wiebke
Liu, Zhiqiang
Lewis, Alan S.
Stoub, Travis R.
Ramos, Elena M.
Brandt, Nicola
Nicholson, Daniel A.
Chetkovich, Dane M.
Bender, Roland A.
Regulation of Axonal HCN1 Trafficking in Perforant Path Involves Expression of Specific TRIP8b Isoforms
title Regulation of Axonal HCN1 Trafficking in Perforant Path Involves Expression of Specific TRIP8b Isoforms
title_full Regulation of Axonal HCN1 Trafficking in Perforant Path Involves Expression of Specific TRIP8b Isoforms
title_fullStr Regulation of Axonal HCN1 Trafficking in Perforant Path Involves Expression of Specific TRIP8b Isoforms
title_full_unstemmed Regulation of Axonal HCN1 Trafficking in Perforant Path Involves Expression of Specific TRIP8b Isoforms
title_short Regulation of Axonal HCN1 Trafficking in Perforant Path Involves Expression of Specific TRIP8b Isoforms
title_sort regulation of axonal hcn1 trafficking in perforant path involves expression of specific trip8b isoforms
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3283722/
https://www.ncbi.nlm.nih.gov/pubmed/22363812
http://dx.doi.org/10.1371/journal.pone.0032181
work_keys_str_mv AT wilkarswiebke regulationofaxonalhcn1traffickinginperforantpathinvolvesexpressionofspecifictrip8bisoforms
AT liuzhiqiang regulationofaxonalhcn1traffickinginperforantpathinvolvesexpressionofspecifictrip8bisoforms
AT lewisalans regulationofaxonalhcn1traffickinginperforantpathinvolvesexpressionofspecifictrip8bisoforms
AT stoubtravisr regulationofaxonalhcn1traffickinginperforantpathinvolvesexpressionofspecifictrip8bisoforms
AT ramoselenam regulationofaxonalhcn1traffickinginperforantpathinvolvesexpressionofspecifictrip8bisoforms
AT brandtnicola regulationofaxonalhcn1traffickinginperforantpathinvolvesexpressionofspecifictrip8bisoforms
AT nicholsondaniela regulationofaxonalhcn1traffickinginperforantpathinvolvesexpressionofspecifictrip8bisoforms
AT chetkovichdanem regulationofaxonalhcn1traffickinginperforantpathinvolvesexpressionofspecifictrip8bisoforms
AT benderrolanda regulationofaxonalhcn1traffickinginperforantpathinvolvesexpressionofspecifictrip8bisoforms