Michelle Dawson posts

Post published on Twitter/X on 12 Mar 2012 21:27

Twitter/X DOI work crossref Extract quoted in the post External link integrated into the post Autism terms

Structured cited links

1 cited resource

DOI work Fetched Post crossref

Fumitoshi Irie, Hedieh Badie-Mahdavi, Yu Yamaguchi (2012). Autism-like socio-communicative deficits and stereotypies in mice lacking heparan sulfate. Proceedings of the National Academy of Sciences, 109(13), 5052-5056. National Academy of Sciences.

Publication date
12 Mar 2012
Identifier
10.1073/pnas.1117881109
Authors
Fumitoshi Irie, Hedieh Badie-Mahdavi, Yu Yamaguchi
Source
Proceedings of the National Academy of Sciences
Details
109(13), 5052-5056
Reference type
article
Publisher
National Academy of Sciences
Metadata source
crossref

Abstract

Heparan sulfate regulates diverse cell-surface signaling events, and its roles in the development of the nervous system recently have been increasingly uncovered by studies using genetic models carrying mutations of genes encoding enzymes for its synthesis. On the other hand, the role of heparan sulfate in the physiological function of the adult brain has been poorly characterized, despite several pieces of evidence suggesting its role in the regulation of synaptic function. To address this issue, we eliminated heparan sulfate from postnatal neurons by conditionally inactivating Ext1, the gene encoding an enzyme essential for heparan sulfate synthesis. Resultant conditional mutant mice show no detectable morphological defects in the cytoarchitecture of the brain. Remarkably, these mutant mice recapitulate almost the full range of autistic symptoms, including impairments in social interaction, expression of stereotyped, repetitive behavior, and impairments in ultrasonic vocalization, as well as some associated features. Mapping of neuronal activation by c-Fos immunohistochemistry demonstrates that neuronal activation in response to social stimulation is attenuated in the amygdala in these mice. Electrophysiology in amygdala pyramidal neurons shows an attenuation of excitatory synaptic transmission, presumably because of the reduction in the level of synaptically localized AMPA-type glutamate receptors. Our results demonstrate that heparan sulfate is critical for normal functioning of glutamatergic synapses and that its deficiency mediates socio-communicative deficits and stereotypies characteristic for autism.

Study authors in this cited reference