Literature DB >> 28439016

Astrocytes locally translate transcripts in their peripheral processes.

Kristina Sakers1,2,3, Allison M Lake2,3, Rohan Khazanchi2,3, Rebecca Ouwenga1,2,3, Michael J Vasek2,3, Adish Dani4,5, Joseph D Dougherty6,3,5.   

Abstract

Local translation in neuronal processes is key to the alteration of synaptic strength necessary for long-term potentiation, learning, and memory. Here, we present evidence that regulated de novo protein synthesis occurs within distal, perisynaptic astrocyte processes. Astrocyte ribosomal proteins are found adjacent to synapses in vivo, and immunofluorescent detection of peptide elongation in acute slices demonstrates robust translation in distal processes. We have also developed a biochemical approach to define candidate transcripts that are locally translated in astrocyte processes. Computational analyses indicate that astrocyte-localized translation is both sequence-dependent and enriched for particular biological functions, such as fatty acid synthesis, and for pathways consistent with known roles for astrocyte processes, such as GABA and glutamate metabolism. These transcripts also include glial regulators of synaptic refinement, such as Sparc Finally, the transcripts contain a disproportionate amount of a binding motif for the quaking RNA binding protein, a sequence we show can significantly regulate mRNA localization and translation in the astrocytes. Overall, our observations raise the possibility that local production of astrocyte proteins may support microscale alterations of adjacent synapses.

Entities:  

Keywords:  RNA-sequencing; TRAP; astrocyte; local translation; synapse

Mesh:

Substances:

Year:  2017        PMID: 28439016      PMCID: PMC5441704          DOI: 10.1073/pnas.1617782114

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  67 in total

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