Cargando…

IGFBP3 Colocalizes with and Regulates Hypocretin (Orexin)

BACKGROUND: The sleep disorder narcolepsy is caused by a vast reduction in neurons producing the hypocretin (orexin) neuropeptides. Based on the tight association with HLA, narcolepsy is believed to result from an autoimmune attack, but the cause of hypocretin cell loss is still unknown. We performe...

Descripción completa

Detalles Bibliográficos
Autores principales: Honda, Makoto, Eriksson, Krister S., Zhang, Shengwen, Tanaka, Susumu, Lin, Ling, Salehi, Ahmad, Hesla, Per Egil, Maehlen, Jan, Gaus, Stephanie E., Yanagisawa, Masashi, Sakurai, Takeshi, Taheri, Shahrad, Tsuchiya, Kuniaki, Honda, Yutaka, Mignot, Emmanuel
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2617764/
https://www.ncbi.nlm.nih.gov/pubmed/19158946
http://dx.doi.org/10.1371/journal.pone.0004254
_version_ 1782163364434149376
author Honda, Makoto
Eriksson, Krister S.
Zhang, Shengwen
Tanaka, Susumu
Lin, Ling
Salehi, Ahmad
Hesla, Per Egil
Maehlen, Jan
Gaus, Stephanie E.
Yanagisawa, Masashi
Sakurai, Takeshi
Taheri, Shahrad
Tsuchiya, Kuniaki
Honda, Yutaka
Mignot, Emmanuel
author_facet Honda, Makoto
Eriksson, Krister S.
Zhang, Shengwen
Tanaka, Susumu
Lin, Ling
Salehi, Ahmad
Hesla, Per Egil
Maehlen, Jan
Gaus, Stephanie E.
Yanagisawa, Masashi
Sakurai, Takeshi
Taheri, Shahrad
Tsuchiya, Kuniaki
Honda, Yutaka
Mignot, Emmanuel
author_sort Honda, Makoto
collection PubMed
description BACKGROUND: The sleep disorder narcolepsy is caused by a vast reduction in neurons producing the hypocretin (orexin) neuropeptides. Based on the tight association with HLA, narcolepsy is believed to result from an autoimmune attack, but the cause of hypocretin cell loss is still unknown. We performed gene expression profiling in the hypothalamus to identify novel genes dysregulated in narcolepsy, as these may be the target of autoimmune attack or modulate hypocretin gene expression. METHODOLOGY/PRINCIPAL FINDINGS: We used microarrays to compare the transcriptome in the posterior hypothalamus of (1) narcoleptic versus control postmortem human brains and (2) transgenic mice lacking hypocretin neurons versus wild type mice. Hypocretin was the most downregulated gene in human narcolepsy brains. Among many additional candidates, only one, insulin-like growth factor binding protein 3 (IGFBP3), was downregulated in both human and mouse models and co-expressed in hypocretin neurons. Functional analysis indicated decreased hypocretin messenger RNA and peptide content, and increased sleep in transgenic mice overexpressing human IGFBP3, an effect possibly mediated through decreased hypocretin promotor activity in the presence of excessive IGFBP3. Although we found no IGFBP3 autoantibodies nor a genetic association with IGFBP3 polymorphisms in human narcolepsy, we found that an IGFBP3 polymorphism known to increase serum IGFBP3 levels was associated with lower CSF hypocretin-1 in normal individuals. CONCLUSIONS/SIGNIFICANCE: Comparison of the transcriptome in narcolepsy and narcolepsy model mouse brains revealed a novel dysregulated gene which colocalized in hypocretin cells. Functional analysis indicated that the identified IGFBP3 is a new regulator of hypocretin cell physiology that may be involved not only in the pathophysiology of narcolepsy, but also in the regulation of sleep in normal individuals, most notably during adolescence. Further studies are required to address the hypothesis that excessive IGFBP3 expression may initiate hypocretin cell death and cause narcolepsy.
format Text
id pubmed-2617764
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-26177642009-01-22 IGFBP3 Colocalizes with and Regulates Hypocretin (Orexin) Honda, Makoto Eriksson, Krister S. Zhang, Shengwen Tanaka, Susumu Lin, Ling Salehi, Ahmad Hesla, Per Egil Maehlen, Jan Gaus, Stephanie E. Yanagisawa, Masashi Sakurai, Takeshi Taheri, Shahrad Tsuchiya, Kuniaki Honda, Yutaka Mignot, Emmanuel PLoS One Research Article BACKGROUND: The sleep disorder narcolepsy is caused by a vast reduction in neurons producing the hypocretin (orexin) neuropeptides. Based on the tight association with HLA, narcolepsy is believed to result from an autoimmune attack, but the cause of hypocretin cell loss is still unknown. We performed gene expression profiling in the hypothalamus to identify novel genes dysregulated in narcolepsy, as these may be the target of autoimmune attack or modulate hypocretin gene expression. METHODOLOGY/PRINCIPAL FINDINGS: We used microarrays to compare the transcriptome in the posterior hypothalamus of (1) narcoleptic versus control postmortem human brains and (2) transgenic mice lacking hypocretin neurons versus wild type mice. Hypocretin was the most downregulated gene in human narcolepsy brains. Among many additional candidates, only one, insulin-like growth factor binding protein 3 (IGFBP3), was downregulated in both human and mouse models and co-expressed in hypocretin neurons. Functional analysis indicated decreased hypocretin messenger RNA and peptide content, and increased sleep in transgenic mice overexpressing human IGFBP3, an effect possibly mediated through decreased hypocretin promotor activity in the presence of excessive IGFBP3. Although we found no IGFBP3 autoantibodies nor a genetic association with IGFBP3 polymorphisms in human narcolepsy, we found that an IGFBP3 polymorphism known to increase serum IGFBP3 levels was associated with lower CSF hypocretin-1 in normal individuals. CONCLUSIONS/SIGNIFICANCE: Comparison of the transcriptome in narcolepsy and narcolepsy model mouse brains revealed a novel dysregulated gene which colocalized in hypocretin cells. Functional analysis indicated that the identified IGFBP3 is a new regulator of hypocretin cell physiology that may be involved not only in the pathophysiology of narcolepsy, but also in the regulation of sleep in normal individuals, most notably during adolescence. Further studies are required to address the hypothesis that excessive IGFBP3 expression may initiate hypocretin cell death and cause narcolepsy. Public Library of Science 2009-01-22 /pmc/articles/PMC2617764/ /pubmed/19158946 http://dx.doi.org/10.1371/journal.pone.0004254 Text en Honda 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
Honda, Makoto
Eriksson, Krister S.
Zhang, Shengwen
Tanaka, Susumu
Lin, Ling
Salehi, Ahmad
Hesla, Per Egil
Maehlen, Jan
Gaus, Stephanie E.
Yanagisawa, Masashi
Sakurai, Takeshi
Taheri, Shahrad
Tsuchiya, Kuniaki
Honda, Yutaka
Mignot, Emmanuel
IGFBP3 Colocalizes with and Regulates Hypocretin (Orexin)
title IGFBP3 Colocalizes with and Regulates Hypocretin (Orexin)
title_full IGFBP3 Colocalizes with and Regulates Hypocretin (Orexin)
title_fullStr IGFBP3 Colocalizes with and Regulates Hypocretin (Orexin)
title_full_unstemmed IGFBP3 Colocalizes with and Regulates Hypocretin (Orexin)
title_short IGFBP3 Colocalizes with and Regulates Hypocretin (Orexin)
title_sort igfbp3 colocalizes with and regulates hypocretin (orexin)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2617764/
https://www.ncbi.nlm.nih.gov/pubmed/19158946
http://dx.doi.org/10.1371/journal.pone.0004254
work_keys_str_mv AT hondamakoto igfbp3colocalizeswithandregulateshypocretinorexin
AT erikssonkristers igfbp3colocalizeswithandregulateshypocretinorexin
AT zhangshengwen igfbp3colocalizeswithandregulateshypocretinorexin
AT tanakasusumu igfbp3colocalizeswithandregulateshypocretinorexin
AT linling igfbp3colocalizeswithandregulateshypocretinorexin
AT salehiahmad igfbp3colocalizeswithandregulateshypocretinorexin
AT heslaperegil igfbp3colocalizeswithandregulateshypocretinorexin
AT maehlenjan igfbp3colocalizeswithandregulateshypocretinorexin
AT gausstephaniee igfbp3colocalizeswithandregulateshypocretinorexin
AT yanagisawamasashi igfbp3colocalizeswithandregulateshypocretinorexin
AT sakuraitakeshi igfbp3colocalizeswithandregulateshypocretinorexin
AT taherishahrad igfbp3colocalizeswithandregulateshypocretinorexin
AT tsuchiyakuniaki igfbp3colocalizeswithandregulateshypocretinorexin
AT hondayutaka igfbp3colocalizeswithandregulateshypocretinorexin
AT mignotemmanuel igfbp3colocalizeswithandregulateshypocretinorexin