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Intersectin associates with synapsin and regulates its nanoscale localization and function. | LitMetric

AI Article Synopsis

  • Neurotransmission relies on synaptic vesicles (SVs) releasing neurotransmitters at the synapse, with a need for replenishment from a reserve pool during high activity.
  • Synapsins play a key role in maintaining this reserve pool and regulating the mobilization of SVs, but how this process works with other factors is not fully understood.
  • The study identifies intersectin, a scaffold protein, as crucial for SV replenishment, demonstrating that its interaction with synapsin I is essential for sustaining neurotransmission, highlighting its role in linking reserve pools to the endocytosis machinery at synapses.

Article Abstract

Neurotransmission is mediated by the exocytic release of neurotransmitters from readily releasable synaptic vesicles (SVs) at the active zone. To sustain neurotransmission during periods of elevated activity, release-ready vesicles need to be replenished from the reserve pool of SVs. The SV-associated synapsins are crucial for maintaining this reserve pool and regulate the mobilization of reserve pool SVs. How replenishment of release-ready SVs from the reserve pool is regulated and which other factors cooperate with synapsins in this process is unknown. Here we identify the endocytic multidomain scaffold protein intersectin as an important regulator of SV replenishment at hippocampal synapses. We found that intersectin directly associates with synapsin I through its Src-homology 3 A domain, and this association is regulated by an intramolecular switch within intersectin 1. Deletion of intersectin 1/2 in mice alters the presynaptic nanoscale distribution of synapsin I and causes defects in sustained neurotransmission due to defective SV replenishment. These phenotypes were rescued by wild-type intersectin 1 but not by a locked mutant of intersectin 1. Our data reveal intersectin as an autoinhibited scaffold that serves as a molecular linker between the synapsin-dependent reserve pool and the presynaptic endocytosis machinery.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5692602PMC
http://dx.doi.org/10.1073/pnas.1715341114DOI Listing

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