Literature DB >> 30707772

The role of PHOX2B-derived astrocytes in chemosensory control of breathing and sleep homeostasis.

Catherine M Czeisler1, Talita M Silva2, Summer R Fair1, Jillian Liu1, Srinivasan Tupal1, Behiye Kaya1, Aaron Cowgill1, Salil Mahajan1, Phelipe E Silva2, Yangyang Wang3,4, Angela R Blissett5, Mustafa Göksel1, Jeremy C Borniger3, Ning Zhang6, Silvio A Fernandes-Junior7,8, Fay Catacutan1, Michele J Alves1, Randy J Nelson6, Vishnu Sundaresean1, Jens Rekling9, Ana C Takakura8, Thiago S Moreira2, José J Otero1.   

Abstract

KEY POINTS: The embryonic PHOX2B-progenitor domain generates neuronal and glial cells which together are involved in chemosensory control of breathing and sleep homeostasis. Ablating PHOX2B-derived astrocytes significantly contributes to secondary hypoxic respiratory depression as well as abnormalities in sleep homeostasis. PHOX2B-derived astrocyte ablation results in axonal pathologies in the retrotrapezoid nucleus. ABSTRACT: We identify in mice a population of ∼800 retrotrapezoid nucleus (RTN) astrocytes derived from PHOX2B-positive, OLIG3-negative progenitor cells, that interact with PHOX2B-expressing RTN chemosensory neurons. PHOX2B-derived astrocyte ablation during early life results in adult-onset O2 chemoreflex deficiency. These animals also display changes in sleep homeostasis, including fragmented sleep and disturbances in delta power after sleep deprivation, all without observable changes in anxiety or social behaviours. Ultrastructural evaluation of the RTN demonstrates that PHOX2B-derived astrocyte ablation results in features characteristic of degenerative neuro-axonal dystrophy, including abnormally dilated axon terminals and increased amounts of synapses containing autophagic vacuoles/phagosomes. We conclude that PHOX2B-derived astrocytes are necessary for maintaining a functional O2 chemosensory reflex in the adult, modulate sleep homeostasis, and are key regulators of synaptic integrity in the RTN region, which is necessary for the chemosensory control of breathing. These data also highlight how defects in embryonic development may manifest as neurodegenerative pathology in an adult.
© 2019 The Authors. The Journal of Physiology © 2019 The Physiological Society.

Entities:  

Keywords:  Chemosensation; PHOX2B; Respiration; Sleep Homeostasis

Mesh:

Substances:

Year:  2019        PMID: 30707772      PMCID: PMC6462490          DOI: 10.1113/JP277082

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  74 in total

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Authors:  A Pattyn; C Goridis; J F Brunet
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3.  Structural and quantitative analysis of astrocytes in the mouse hippocampus.

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Authors:  Jean-François Brunet; Alexandre Pattyn
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6.  Adenosine-mediated presynaptic modulation of glutamatergic transmission in the laterodorsal tegmentum.

Authors:  E Arrigoni; D G Rainnie; R W McCarley; R W Greene
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7.  Hypercapnia can induce arousal from sleep in the absence of altered respiratory mechanoreception.

Authors:  N T Ayas; R Brown; S A Shea
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8.  Adenosinergic modulation of rat basal forebrain neurons during sleep and waking: neuronal recording with microdialysis.

Authors:  M N Alam; R Szymusiak; H Gong; J King; D McGinty
Journal:  J Physiol       Date:  1999-12-15       Impact factor: 5.182

9.  The Phox2b transcription factor coordinately regulates neuronal cell cycle exit and identity.

Authors:  V Dubreuil; M R Hirsch; A Pattyn; J F Brunet; C Goridis
Journal:  Development       Date:  2000-12       Impact factor: 6.868

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Authors:  A Pattyn; M Hirsch; C Goridis; J F Brunet
Journal:  Development       Date:  2000-04       Impact factor: 6.868

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