The STEP<sub>61</sub> interactome reveals subunit-specific AMPA receptor binding and synaptic regulation.

Won, Sehoon; Incontro, Salvatore; Li, Yan; Nicoll, Roger A; Roche, Katherine W · Proc Natl Acad Sci U S A · 2019

basic_science · Level V

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Abstract

Striatal-enriched protein tyrosine phosphatase (STEP) is a brain-specific protein phosphatase that regulates a variety of synaptic proteins, including NMDA receptors (NAMDRs). To better understand STEP's effect on other receptors, we used mass spectrometry to identify the STEP<sub>61</sub> interactome. We identified a number of known interactors, but also ones including the GluA2 subunit of AMPA receptors (AMPARs). We show that STEP<sub>61</sub> binds to the C termini of GluA2 and GluA3 as well as endogenous AMPARs in hippocampus. The synaptic expression of GluA2 and GluA3 is increased in STEP-KO mouse brain, and STEP knockdown in hippocampal slices increases AMPAR-mediated synaptic currents. Interestingly, STEP<sub>61</sub> overexpression reduces the synaptic expression and synaptic currents of both AMPARs and NMDARs. Furthermore, STEP<sub>61</sub> regulation of synaptic AMPARs is mediated by lysosomal degradation. Thus, we report a comprehensive list of STEP<sub>61</sub> binding partners, including AMPARs, and reveal a central role for STEP<sub>61</sub> in differentially organizing synaptic AMPARs and NMDARs.

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