Cargando…

A Primary Cortical Input to Hippocampus Expresses a Pathway-Specific and Endocannabinoid-Dependent Form of Long-Term Potentiation

The endocannabinoid 2-arachidonoyl-sn-glycerol (2-AG), a key modulator of synaptic transmission in mammalian brain, is produced in dendritic spines and then crosses the synaptic junction to depress neurotransmitter release. Here we report that 2-AG-dependent retrograde signaling also mediates an end...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Weisheng, Trieu, Brian H., Palmer, Linda C., Jia, Yousheng, Pham, Danielle T., Jung, Kwang-Mook, Karsten, Carley A., Merrill, Collin B., Mackie, Ken, Gall, Christine M., Piomelli, Daniele, Lynch, Gary
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for Neuroscience 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4976302/
https://www.ncbi.nlm.nih.gov/pubmed/27517090
http://dx.doi.org/10.1523/ENEURO.0160-16.2016
_version_ 1782446847656198144
author Wang, Weisheng
Trieu, Brian H.
Palmer, Linda C.
Jia, Yousheng
Pham, Danielle T.
Jung, Kwang-Mook
Karsten, Carley A.
Merrill, Collin B.
Mackie, Ken
Gall, Christine M.
Piomelli, Daniele
Lynch, Gary
author_facet Wang, Weisheng
Trieu, Brian H.
Palmer, Linda C.
Jia, Yousheng
Pham, Danielle T.
Jung, Kwang-Mook
Karsten, Carley A.
Merrill, Collin B.
Mackie, Ken
Gall, Christine M.
Piomelli, Daniele
Lynch, Gary
author_sort Wang, Weisheng
collection PubMed
description The endocannabinoid 2-arachidonoyl-sn-glycerol (2-AG), a key modulator of synaptic transmission in mammalian brain, is produced in dendritic spines and then crosses the synaptic junction to depress neurotransmitter release. Here we report that 2-AG-dependent retrograde signaling also mediates an enduring enhancement of glutamate release, as assessed with independent tests, in the lateral perforant path (LPP), one of two cortical inputs to the granule cells of the dentate gyrus. Induction of this form of long-term potentiation (LTP) involved two types of glutamate receptors, changes in postsynaptic calcium, and the postsynaptic enzyme that synthesizes 2-AG. Stochastic optical reconstruction microscopy confirmed that CB(1) cannabinoid receptors are localized presynaptically to LPP terminals, while the inhibition or knockout of the receptors eliminated LPP-LTP. Suppressing the enzyme that degrades 2-AG dramatically enhanced LPP potentiation, while overexpressing it produced the opposite effect. Priming with a CB(1) agonist markedly reduced the threshold for LTP. Latrunculin A, which prevents actin polymerization, blocked LPP-LTP when applied extracellularly but had no effect when infused postsynaptically into granule cells, indicating that critical actin remodeling resides in the presynaptic compartment. Importantly, there was no evidence for the LPP form of potentiation in the Schaffer-commissural innervation of field CA1 or in the medial perforant path. Peripheral injections of compounds that block or enhance LPP-LTP had corresponding effects on the formation of long-term memory for cues conveyed to the dentate gyrus by the LPP. Together, these results indicate that the encoding of information carried by a principal hippocampal afferent involves an unusual, regionally differentiated form of plasticity.
format Online
Article
Text
id pubmed-4976302
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Society for Neuroscience
record_format MEDLINE/PubMed
spelling pubmed-49763022016-08-11 A Primary Cortical Input to Hippocampus Expresses a Pathway-Specific and Endocannabinoid-Dependent Form of Long-Term Potentiation Wang, Weisheng Trieu, Brian H. Palmer, Linda C. Jia, Yousheng Pham, Danielle T. Jung, Kwang-Mook Karsten, Carley A. Merrill, Collin B. Mackie, Ken Gall, Christine M. Piomelli, Daniele Lynch, Gary eNeuro New Research The endocannabinoid 2-arachidonoyl-sn-glycerol (2-AG), a key modulator of synaptic transmission in mammalian brain, is produced in dendritic spines and then crosses the synaptic junction to depress neurotransmitter release. Here we report that 2-AG-dependent retrograde signaling also mediates an enduring enhancement of glutamate release, as assessed with independent tests, in the lateral perforant path (LPP), one of two cortical inputs to the granule cells of the dentate gyrus. Induction of this form of long-term potentiation (LTP) involved two types of glutamate receptors, changes in postsynaptic calcium, and the postsynaptic enzyme that synthesizes 2-AG. Stochastic optical reconstruction microscopy confirmed that CB(1) cannabinoid receptors are localized presynaptically to LPP terminals, while the inhibition or knockout of the receptors eliminated LPP-LTP. Suppressing the enzyme that degrades 2-AG dramatically enhanced LPP potentiation, while overexpressing it produced the opposite effect. Priming with a CB(1) agonist markedly reduced the threshold for LTP. Latrunculin A, which prevents actin polymerization, blocked LPP-LTP when applied extracellularly but had no effect when infused postsynaptically into granule cells, indicating that critical actin remodeling resides in the presynaptic compartment. Importantly, there was no evidence for the LPP form of potentiation in the Schaffer-commissural innervation of field CA1 or in the medial perforant path. Peripheral injections of compounds that block or enhance LPP-LTP had corresponding effects on the formation of long-term memory for cues conveyed to the dentate gyrus by the LPP. Together, these results indicate that the encoding of information carried by a principal hippocampal afferent involves an unusual, regionally differentiated form of plasticity. Society for Neuroscience 2016-08-08 /pmc/articles/PMC4976302/ /pubmed/27517090 http://dx.doi.org/10.1523/ENEURO.0160-16.2016 Text en Copyright © 2016 Wang et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle New Research
Wang, Weisheng
Trieu, Brian H.
Palmer, Linda C.
Jia, Yousheng
Pham, Danielle T.
Jung, Kwang-Mook
Karsten, Carley A.
Merrill, Collin B.
Mackie, Ken
Gall, Christine M.
Piomelli, Daniele
Lynch, Gary
A Primary Cortical Input to Hippocampus Expresses a Pathway-Specific and Endocannabinoid-Dependent Form of Long-Term Potentiation
title A Primary Cortical Input to Hippocampus Expresses a Pathway-Specific and Endocannabinoid-Dependent Form of Long-Term Potentiation
title_full A Primary Cortical Input to Hippocampus Expresses a Pathway-Specific and Endocannabinoid-Dependent Form of Long-Term Potentiation
title_fullStr A Primary Cortical Input to Hippocampus Expresses a Pathway-Specific and Endocannabinoid-Dependent Form of Long-Term Potentiation
title_full_unstemmed A Primary Cortical Input to Hippocampus Expresses a Pathway-Specific and Endocannabinoid-Dependent Form of Long-Term Potentiation
title_short A Primary Cortical Input to Hippocampus Expresses a Pathway-Specific and Endocannabinoid-Dependent Form of Long-Term Potentiation
title_sort primary cortical input to hippocampus expresses a pathway-specific and endocannabinoid-dependent form of long-term potentiation
topic New Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4976302/
https://www.ncbi.nlm.nih.gov/pubmed/27517090
http://dx.doi.org/10.1523/ENEURO.0160-16.2016
work_keys_str_mv AT wangweisheng aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT trieubrianh aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT palmerlindac aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT jiayousheng aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT phamdaniellet aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT jungkwangmook aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT karstencarleya aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT merrillcollinb aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT mackieken aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT gallchristinem aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT piomellidaniele aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT lynchgary aprimarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT wangweisheng primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT trieubrianh primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT palmerlindac primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT jiayousheng primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT phamdaniellet primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT jungkwangmook primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT karstencarleya primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT merrillcollinb primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT mackieken primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT gallchristinem primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT piomellidaniele primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation
AT lynchgary primarycorticalinputtohippocampusexpressesapathwayspecificandendocannabinoiddependentformoflongtermpotentiation