Article Synopsis

  • Arc is crucial for the brain's ability to store long-term information and is linked to synaptic plasticity and neurodevelopmental disorders.
  • The study reveals that Arc can form virus-like structures, encapsulating RNA and facilitating its transfer to other cells via extracellular vesicles.
  • Evolutionarily, Arc is identified as a descendant of retrotransposons, suggesting that retroviral proteins have been adapted for communication between neurons.

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Article Abstract

The neuronal gene Arc is essential for long-lasting information storage in the mammalian brain, mediates various forms of synaptic plasticity, and has been implicated in neurodevelopmental disorders. However, little is known about Arc's molecular function and evolutionary origins. Here, we show that Arc self-assembles into virus-like capsids that encapsulate RNA. Endogenous Arc protein is released from neurons in extracellular vesicles that mediate the transfer of Arc mRNA into new target cells, where it can undergo activity-dependent translation. Purified Arc capsids are endocytosed and are able to transfer Arc mRNA into the cytoplasm of neurons. These results show that Arc exhibits similar molecular properties to retroviral Gag proteins. Evolutionary analysis indicates that Arc is derived from a vertebrate lineage of Ty3/gypsy retrotransposons, which are also ancestors to retroviruses. These findings suggest that Gag retroelements have been repurposed during evolution to mediate intercellular communication in the nervous system.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5884693PMC
http://dx.doi.org/10.1016/j.cell.2017.12.024DOI Listing

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