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Neural Circuit-Specialized Astrocytes: Transcriptomic, Proteomic, Morphological, and Functional Evidence.

Citation
Chai, H., et al. “Neural Circuit-Specialized Astrocytes: Transcriptomic, Proteomic, Morphological, And Functional Evidence.”. Neuron, pp. 531-549.e9.
Center UCSD-UCLA
Author Hua Chai, Blanca Diaz-Castro, Eiji Shigetomi, Emma Monte, Christopher Octeau, Xinzhu Yu, Whitaker Cohn, Pradeep S Rajendran, Thomas M Vondriska, Julian P Whitelegge, Giovanni Coppola, Baljit S Khakh
Keywords Aldh1l1, Cre/ERT2, GCaMP, RNA-seq, astrocyte, Calcium, diversity, hippocampus, proteomics, Striatum
Abstract

Astrocytes are ubiquitous in the brain and are widely held to be largely identical. However, this view has not been fully tested, and the possibility that astrocytes are neural circuit specialized remains largely unexplored. Here, we used multiple integrated approaches, including RNA sequencing (RNA-seq), mass spectrometry, electrophysiology, immunohistochemistry, serial block-face-scanning electron microscopy, morphological reconstructions, pharmacogenetics, and diffusible dye, calcium, and glutamate imaging, to directly compare adult striatal and hippocampal astrocytes under identical conditions. We found significant differences in electrophysiological properties, Ca signaling, morphology, and astrocyte-synapse proximity between striatal and hippocampal astrocytes. Unbiased evaluation of actively translated RNA and proteomic data confirmed significant astrocyte diversity between hippocampal and striatal circuits. We thus report core astrocyte properties, reveal evidence for specialized astrocytes within neural circuits, and provide new, integrated database resources and approaches to explore astrocyte diversity and function throughout the adult brain. VIDEO ABSTRACT.

Year of Publication
2017
Journal
Neuron
Volume
95
Issue
3
Number of Pages
531-549.e9
Date Published
08/2017
ISSN Number
1097-4199
DOI
10.1016/j.neuron.2017.06.029
Alternate Journal
Neuron
PMID
28712653
PMCID
PMC5811312
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