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ABSTRACT: Significance statement
The KCTD proteins 8, 12, and 16 are auxiliary subunits of GABAB receptors that differentially regulate G-protein signaling of the receptor. The KCTD proteins are generally assumed to function as homo-oligomers. Here we show that the KCTD proteins also assemble hetero-oligomers in all possible dual combinations. Experiments in live cells demonstrate that KCTD hetero-oligomers form at least tetramers and that these tetramers directly interact with the receptor and the G-protein. KCTD12/KCTD16 hetero-oligomers impart unique kinetic properties to GABAB receptor-induced Kir3 currents in heterologous cells. KCTD12/KCTD16 hetero-oligomers are abundant in the hippocampus, where they prolong the duration of slow IPSCs in pyramidal cells. Our data therefore support that KCTD hetero-oligomers modulate physiologically induced K+ current responses in the brain.
SUBMITTER: Fritzius T
PROVIDER: S-EPMC6596860 | biostudies-literature | 2017 Feb
REPOSITORIES: biostudies-literature

The Journal of neuroscience : the official journal of the Society for Neuroscience 20161221 5
GABA<sub>B</sub> receptors are the G-protein coupled receptors for the main inhibitory neurotransmitter in the brain, GABA. GABA<sub>B</sub> receptors were shown to associate with homo-oligomers of auxiliary KCTD8, KCTD12, KCTD12b, and KCTD16 subunits (named after their T1 K<sup>+</sup>-channel tetramerization domain) that regulate G-protein signaling of the receptor. Here we provide evidence that GABA<sub>B</sub> receptors also associate with hetero-oligomers of KCTD subunits. Coimmunoprecipita ...[more]