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Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit

Sensorimotor information processing underlies normal cognitive and behavioral traits and has classically been evaluated through prepulse inhibition (PPI) of a startle reflex. PPI is a behavioral dimension deregulated in several neurological and psychiatric disorders, yet the mechanisms underlying th...

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Autores principales: Jaaro-Peled, Hanna, Kumar, Sunil, Hughes, Dalton, Sumitomo, Akiko, Kim, Sun-Hong, Zoubovsky, Sandra, Hirota-Tsuyada, Yuki, Zala, Diana, Bruyere, Julie, Katz, Brittany M., Huang, Beverly, Flores, Rafael, Narayan, Soumya, Hou, Zhipeng, Economides, Aris N., Hikida, Takatoshi, Wetsel, William C., Deisseroth, Karl, Mori, Susumu, Brandon, Nicholas J., Tanaka, Motomasa, Ishizuka, Koko, Houslay, Miles D., Saudou, Frédéric, Dzirasa, Kafui, Sawa, Akira, Tomoda, Toshifumi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9272458/
https://www.ncbi.nlm.nih.gov/pubmed/35165396
http://dx.doi.org/10.1038/s41380-021-01389-3
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author Jaaro-Peled, Hanna
Kumar, Sunil
Hughes, Dalton
Sumitomo, Akiko
Kim, Sun-Hong
Zoubovsky, Sandra
Hirota-Tsuyada, Yuki
Zala, Diana
Bruyere, Julie
Katz, Brittany M.
Huang, Beverly
Flores, Rafael
Narayan, Soumya
Hou, Zhipeng
Economides, Aris N.
Hikida, Takatoshi
Wetsel, William C.
Deisseroth, Karl
Mori, Susumu
Brandon, Nicholas J.
Tanaka, Motomasa
Ishizuka, Koko
Houslay, Miles D.
Saudou, Frédéric
Dzirasa, Kafui
Sawa, Akira
Tomoda, Toshifumi
author_facet Jaaro-Peled, Hanna
Kumar, Sunil
Hughes, Dalton
Sumitomo, Akiko
Kim, Sun-Hong
Zoubovsky, Sandra
Hirota-Tsuyada, Yuki
Zala, Diana
Bruyere, Julie
Katz, Brittany M.
Huang, Beverly
Flores, Rafael
Narayan, Soumya
Hou, Zhipeng
Economides, Aris N.
Hikida, Takatoshi
Wetsel, William C.
Deisseroth, Karl
Mori, Susumu
Brandon, Nicholas J.
Tanaka, Motomasa
Ishizuka, Koko
Houslay, Miles D.
Saudou, Frédéric
Dzirasa, Kafui
Sawa, Akira
Tomoda, Toshifumi
author_sort Jaaro-Peled, Hanna
collection PubMed
description Sensorimotor information processing underlies normal cognitive and behavioral traits and has classically been evaluated through prepulse inhibition (PPI) of a startle reflex. PPI is a behavioral dimension deregulated in several neurological and psychiatric disorders, yet the mechanisms underlying the cross-diagnostic nature of PPI deficits across these conditions remain to be understood. To identify circuitry mechanisms for PPI, we performed circuitry recording over the prefrontal cortex and striatum, two brain regions previously implicated in PPI, using wild-type (WT) mice compared to Disc1-locus-impairment (LI) mice, a model representing neuropsychiatric conditions. We demonstrated that the corticostriatal projection regulates neurophysiological responses during the PPI testing in WT, whereas these circuitry responses were disrupted in Disc1-LI mice. Because our biochemical analyses revealed attenuated brain-derived neurotrophic factor (Bdnf) transport along the corticostriatal circuit in Disc1-LI mice, we investigated the potential role of Bdnf in this circuitry for regulation of PPI. Virus-mediated delivery of Bdnf into the striatum rescued PPI deficits in Disc1-LI mice. Pharmacologically augmenting Bdnf transport by chronic lithium administration, partly via phosphorylation of Huntingtin (Htt) serine-421 and its integration into the motor machinery, restored striatal Bdnf levels and rescued PPI deficits in Disc1-LI mice. Furthermore, reducing the cortical Bdnf expression negated this rescuing effect of lithium, confirming the key role of Bdnf in lithium-mediated PPI rescuing. Collectively, the data suggest that striatal Bdnf supply, collaboratively regulated by Htt and Disc1 along the corticostriatal circuit, is involved in sensorimotor gating, highlighting the utility of dimensional approach in investigating pathophysiological mechanisms across neuropsychiatric disorders.
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spelling pubmed-92724582022-08-14 Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit Jaaro-Peled, Hanna Kumar, Sunil Hughes, Dalton Sumitomo, Akiko Kim, Sun-Hong Zoubovsky, Sandra Hirota-Tsuyada, Yuki Zala, Diana Bruyere, Julie Katz, Brittany M. Huang, Beverly Flores, Rafael Narayan, Soumya Hou, Zhipeng Economides, Aris N. Hikida, Takatoshi Wetsel, William C. Deisseroth, Karl Mori, Susumu Brandon, Nicholas J. Tanaka, Motomasa Ishizuka, Koko Houslay, Miles D. Saudou, Frédéric Dzirasa, Kafui Sawa, Akira Tomoda, Toshifumi Mol Psychiatry Article Sensorimotor information processing underlies normal cognitive and behavioral traits and has classically been evaluated through prepulse inhibition (PPI) of a startle reflex. PPI is a behavioral dimension deregulated in several neurological and psychiatric disorders, yet the mechanisms underlying the cross-diagnostic nature of PPI deficits across these conditions remain to be understood. To identify circuitry mechanisms for PPI, we performed circuitry recording over the prefrontal cortex and striatum, two brain regions previously implicated in PPI, using wild-type (WT) mice compared to Disc1-locus-impairment (LI) mice, a model representing neuropsychiatric conditions. We demonstrated that the corticostriatal projection regulates neurophysiological responses during the PPI testing in WT, whereas these circuitry responses were disrupted in Disc1-LI mice. Because our biochemical analyses revealed attenuated brain-derived neurotrophic factor (Bdnf) transport along the corticostriatal circuit in Disc1-LI mice, we investigated the potential role of Bdnf in this circuitry for regulation of PPI. Virus-mediated delivery of Bdnf into the striatum rescued PPI deficits in Disc1-LI mice. Pharmacologically augmenting Bdnf transport by chronic lithium administration, partly via phosphorylation of Huntingtin (Htt) serine-421 and its integration into the motor machinery, restored striatal Bdnf levels and rescued PPI deficits in Disc1-LI mice. Furthermore, reducing the cortical Bdnf expression negated this rescuing effect of lithium, confirming the key role of Bdnf in lithium-mediated PPI rescuing. Collectively, the data suggest that striatal Bdnf supply, collaboratively regulated by Htt and Disc1 along the corticostriatal circuit, is involved in sensorimotor gating, highlighting the utility of dimensional approach in investigating pathophysiological mechanisms across neuropsychiatric disorders. 2022-03 2022-02-14 /pmc/articles/PMC9272458/ /pubmed/35165396 http://dx.doi.org/10.1038/s41380-021-01389-3 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: (https://www.springernature.com/gp/open-research/policies/accepted-manuscript-terms)
spellingShingle Article
Jaaro-Peled, Hanna
Kumar, Sunil
Hughes, Dalton
Sumitomo, Akiko
Kim, Sun-Hong
Zoubovsky, Sandra
Hirota-Tsuyada, Yuki
Zala, Diana
Bruyere, Julie
Katz, Brittany M.
Huang, Beverly
Flores, Rafael
Narayan, Soumya
Hou, Zhipeng
Economides, Aris N.
Hikida, Takatoshi
Wetsel, William C.
Deisseroth, Karl
Mori, Susumu
Brandon, Nicholas J.
Tanaka, Motomasa
Ishizuka, Koko
Houslay, Miles D.
Saudou, Frédéric
Dzirasa, Kafui
Sawa, Akira
Tomoda, Toshifumi
Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit
title Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit
title_full Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit
title_fullStr Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit
title_full_unstemmed Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit
title_short Regulation of sensorimotor gating via Disc1/Huntingtin-mediated Bdnf transport in the cortico-striatal circuit
title_sort regulation of sensorimotor gating via disc1/huntingtin-mediated bdnf transport in the cortico-striatal circuit
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9272458/
https://www.ncbi.nlm.nih.gov/pubmed/35165396
http://dx.doi.org/10.1038/s41380-021-01389-3
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