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10.1126/science.aag0821

http://scihub22266oqcxt.onion/10.1126/science.aag0821
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C5432043!5432043!27609886
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suck abstract from ncbi


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pmid27609886      Science 2016 ; 353 (6304): 1123-9
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  • Identification of an Elaborate Complex Mediating Postsynaptic Inhibition #MMPMID27609886
  • Uezu A; Kanak DJ; Bradshaw TW; Soderblom EJ; Catavero CM; Burette AC; Weinberg RJ; Soderling SH
  • Science 2016[Sep]; 353 (6304): 1123-9 PMID27609886show ga
  • Inhibitory synapses dampen neuronal activity through postsynaptic hyperpolarization. The composition of the inhibitory postsynapse and the mechanistic basis of its regulation, however, remains poorly understood. We used an in vivo chemico-genetic proximity-labeling approach to discover inhibitory postsynaptic proteins. Quantitative mass spectrometry not only recapitulated known inhibitory postsynaptic proteins, but also revealed a large network of new proteins, many of which are either implicated in neurodevelopmental disorders or are of unknown function. CRISPR-depletion of one of these previously uncharacterized proteins, InSyn1, led to decreased postsynaptic inhibitory sites, reduced frequency of miniature inhibitory currents, and increased excitability in the hippocampus. Our findings uncover a rich and functionally diverse assemblage of previously unknown proteins that regulate postsynaptic inhibition and might contribute to developmental brain disorders.
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