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Serotonin/5-HT1A Signaling in the Neurovascular Unit Regulates Endothelial CLDN5 Expression

We previously reported that site-selective claudin-5 (CLDN5) breakdown and protein kinase A (PKA) activation are observed in brain microvessels of schizophrenia, but the underlying molecular basis remains unknown. The 5-HT1 receptors decline the intracellular cAMP levels and inactivate the major dow...

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Autores principales: Sugimoto, Kotaro, Ichikawa-Tomikawa, Naoki, Nishiura, Keisuke, Kunii, Yasuto, Sano, Yasuteru, Shimizu, Fumitaka, Kakita, Akiyoshi, Kanda, Takashi, Imura, Tetsuya, Chiba, Hideki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7795278/
https://www.ncbi.nlm.nih.gov/pubmed/33383868
http://dx.doi.org/10.3390/ijms22010254
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author Sugimoto, Kotaro
Ichikawa-Tomikawa, Naoki
Nishiura, Keisuke
Kunii, Yasuto
Sano, Yasuteru
Shimizu, Fumitaka
Kakita, Akiyoshi
Kanda, Takashi
Imura, Tetsuya
Chiba, Hideki
author_facet Sugimoto, Kotaro
Ichikawa-Tomikawa, Naoki
Nishiura, Keisuke
Kunii, Yasuto
Sano, Yasuteru
Shimizu, Fumitaka
Kakita, Akiyoshi
Kanda, Takashi
Imura, Tetsuya
Chiba, Hideki
author_sort Sugimoto, Kotaro
collection PubMed
description We previously reported that site-selective claudin-5 (CLDN5) breakdown and protein kinase A (PKA) activation are observed in brain microvessels of schizophrenia, but the underlying molecular basis remains unknown. The 5-HT1 receptors decline the intracellular cAMP levels and inactivate the major downstream PKA, and the 5-HT1A receptor is a promising target for schizophrenia. Therefore, we elucidated the involvement of serotonin/5-HT1A signaling in the endothelial CLDN5 expression. We demonstrate, by immunohistochemistry using post-mortem human brain tissue, that the 5-HT1A receptor is expressed in brain microvascular endothelial cells (BMVECs) and mural cells of the normal prefrontal cortex (PFC) gray matter. We also show that PKA is aberrantly activated not only in BMVECs but also in mural cells of the schizophrenic PFC. We subsequently revealed that the endothelial cell–pericyte tube-like structure was formed in a novel two-dimensional co-culture of human primary BMVECs and a human brain-derived pericyte cell line, in both of which the 5-HT1A receptor was expressed. Furthermore, we disclose that the serotonin/5-HT1A signaling enhances endothelial CLDN5 expression in BMVECs under two-dimensional co-culture conditions. Our findings provide novel insights into the physiological and pathological significance of serotonin/5-HT1A signaling in the region-specific regulation of the blood-brain barrier.
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spelling pubmed-77952782021-01-10 Serotonin/5-HT1A Signaling in the Neurovascular Unit Regulates Endothelial CLDN5 Expression Sugimoto, Kotaro Ichikawa-Tomikawa, Naoki Nishiura, Keisuke Kunii, Yasuto Sano, Yasuteru Shimizu, Fumitaka Kakita, Akiyoshi Kanda, Takashi Imura, Tetsuya Chiba, Hideki Int J Mol Sci Article We previously reported that site-selective claudin-5 (CLDN5) breakdown and protein kinase A (PKA) activation are observed in brain microvessels of schizophrenia, but the underlying molecular basis remains unknown. The 5-HT1 receptors decline the intracellular cAMP levels and inactivate the major downstream PKA, and the 5-HT1A receptor is a promising target for schizophrenia. Therefore, we elucidated the involvement of serotonin/5-HT1A signaling in the endothelial CLDN5 expression. We demonstrate, by immunohistochemistry using post-mortem human brain tissue, that the 5-HT1A receptor is expressed in brain microvascular endothelial cells (BMVECs) and mural cells of the normal prefrontal cortex (PFC) gray matter. We also show that PKA is aberrantly activated not only in BMVECs but also in mural cells of the schizophrenic PFC. We subsequently revealed that the endothelial cell–pericyte tube-like structure was formed in a novel two-dimensional co-culture of human primary BMVECs and a human brain-derived pericyte cell line, in both of which the 5-HT1A receptor was expressed. Furthermore, we disclose that the serotonin/5-HT1A signaling enhances endothelial CLDN5 expression in BMVECs under two-dimensional co-culture conditions. Our findings provide novel insights into the physiological and pathological significance of serotonin/5-HT1A signaling in the region-specific regulation of the blood-brain barrier. MDPI 2020-12-29 /pmc/articles/PMC7795278/ /pubmed/33383868 http://dx.doi.org/10.3390/ijms22010254 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Sugimoto, Kotaro
Ichikawa-Tomikawa, Naoki
Nishiura, Keisuke
Kunii, Yasuto
Sano, Yasuteru
Shimizu, Fumitaka
Kakita, Akiyoshi
Kanda, Takashi
Imura, Tetsuya
Chiba, Hideki
Serotonin/5-HT1A Signaling in the Neurovascular Unit Regulates Endothelial CLDN5 Expression
title Serotonin/5-HT1A Signaling in the Neurovascular Unit Regulates Endothelial CLDN5 Expression
title_full Serotonin/5-HT1A Signaling in the Neurovascular Unit Regulates Endothelial CLDN5 Expression
title_fullStr Serotonin/5-HT1A Signaling in the Neurovascular Unit Regulates Endothelial CLDN5 Expression
title_full_unstemmed Serotonin/5-HT1A Signaling in the Neurovascular Unit Regulates Endothelial CLDN5 Expression
title_short Serotonin/5-HT1A Signaling in the Neurovascular Unit Regulates Endothelial CLDN5 Expression
title_sort serotonin/5-ht1a signaling in the neurovascular unit regulates endothelial cldn5 expression
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7795278/
https://www.ncbi.nlm.nih.gov/pubmed/33383868
http://dx.doi.org/10.3390/ijms22010254
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