The Aging Astrocyte Transcriptome from Multiple Regions of the Mouse Brain.

Cell Rep

Molecular Neurobiology Laboratory, Salk Institute for Biological Studies, 10010 North Torrey Pines Rd., La Jolla, CA 92037, USA. Electronic address:

Published: January 2018

AI Article Synopsis

  • Aging brains experience cognitive decline linked to reduced synapse function and changes in metabolism, with astrocytes playing a crucial role in synapse regulation.
  • Researchers created a database of RNA-seq data comparing astrocyte gene expression in aged and adult mice across various brain regions.
  • Findings reveal that while aging astrocytes show few changes in homeostatic genes, they upregulate genes that promote synapse elimination, potentially leading to neuronal damage and cognitive decline.

Article Abstract

Aging brains undergo cognitive decline, associated with decreased neuronal synapse number and function and altered metabolism. Astrocytes regulate neuronal synapse formation and function in development and adulthood, but whether these properties change during aging, contributing to neuronal dysfunction, is unknown. We addressed this by generating aged and adult astrocyte transcriptomes from multiple mouse brain regions. These data provide a comprehensive RNA-seq database of adult and aged astrocyte gene expression, available online as a resource. We identify astrocyte genes altered by aging across brain regions and regionally unique aging changes. Aging astrocytes show minimal alteration of homeostatic and neurotransmission-regulating genes. However, aging astrocytes upregulate genes that eliminate synapses and partially resemble reactive astrocytes. We further identified heterogeneous expression of synapse-regulating genes between astrocytes from different cortical regions. We find that alterations to astrocytes in aging create an environment permissive to synapse elimination and neuronal damage, potentially contributing to aging-associated cognitive decline.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5783200PMC
http://dx.doi.org/10.1016/j.celrep.2017.12.039DOI Listing

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