AI Article Synopsis

  • ASIC1a, an ion channel found in the brain, is crucial for motor skills and learning related to the striatum, a part of the basal ganglia.
  • * Research showed that the absence of ASIC1a in mice led to structural issues in neurons and reduced function of key receptors, impacting motor coordination and procedural learning.
  • * The deficits seen in mice without ASIC1a were linked to decreased activation of specific proteins (CaMKII and ERKs), but could be corrected by restoring ASIC1a or CaMKII in the striatum.

Article Abstract

Acid-sensing ion channel 1a (ASIC1a) is abundant in multiple brain regions, including the striatum, which serves as the input nucleus of the basal ganglia and is critically involved in procedural learning and motor memory. We investigated the functional role of ASIC1a in striatal neurons. We found that ASIC1a was critical for striatum-dependent motor coordination and procedural learning by regulating the synaptic plasticity of striatal medium spiny neurons. Global deletion of in mice led to increased dendritic spine density but impaired spine morphology and postsynaptic architecture, which were accompanied by the decreased function of -methyl-d-aspartate (NMDA) receptors at excitatory synapses. These structural and functional changes caused by the loss of ASIC1a were largely mediated by reduced activation (phosphorylation) of Ca/calmodulin-dependent protein kinase II (CaMKII) and extracellular signal-regulated protein kinases (ERKs). Consequently, null mice exhibited poor performance on multiple motor tasks, which was rescued by striatal-specific expression of either ASIC1a or CaMKII. Together, our data reveal a previously unknown mechanism mediated by ASIC1a that promotes the excitatory synaptic function underlying striatum-related procedural learning and memory.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6324561PMC
http://dx.doi.org/10.1126/scisignal.aar4481DOI Listing

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