Scientific Publication 

AMPA-Receptor Specific Biogenesis Complexes Control Synaptic Transmission and Intellectual Ability

Author(s): Brechet, Aline, PhD, Reis, Prof. Andre, PhD, MD, Sticht, Prof. Heinrich, PhD, Al-Sannaa, Nouriya, Rolfs, Prof. Arndt, MD, Kulik, Akos, PhD, Schulte, Uwe, PhD, Colleaux, Laurence, PhD, Jamra, Rami Abou, MD, Nitschke, Patrick, Bole-Feysot, Christine, PhD, Buchert, Rebecca, Schwenk, Jochen, PhD, Boudkkazi, Sami, PhD, Zolles, Gerd, PhD, Siquier-Pernet, Karine, Schaber, Irene, Bildl, Wolfgang, PhD, Saadi, Abdelkrim, Fakler, Prof. Bernd, MD

Here insights are provided into the early biogenesis of AMPARs and its pronounced impact on synaptic transmission and brain function is demonstrated. Read more!

AMPA-type glutamate receptors (AMPARs), key elements in excitatory neurotransmission in the brain, are macromolecular complexes whose properties and cellular functions are determined by the co-assembled constituents of their proteome. Here we identify AMPAR complexes that transiently form in the endoplasmic reticulum (ER) and lack the core-subunits typical for AMPARs in the plasma membrane. Central components of these ER AMPARs are the proteome constituents FRRS1l (C9orf4) and CPT1c that specifically and cooperatively bind to the pore-forming GluA1-4 proteins of AMPARs. Our results provide insight into the early biogenesis of AMPARs and demonstrate its pronounced impact on synaptic transmission and brain function.


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