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Triple arginines as molecular determinants for pentameric assembly of the intracellular domain of 5-HT3A receptors.


ABSTRACT: Serotonin type 3 receptors (5-HT3Rs) are cation-conducting pentameric ligand-gated ion channels and members of the Cys-loop superfamily in eukaryotes. 5-HT3Rs are found in the peripheral and central nervous system, and they are targets for drugs used to treat anxiety, drug dependence, and schizophrenia, as well as chemotherapy-induced and postoperative nausea and emesis. Decades of research of Cys-loop receptors have identified motifs in both the extracellular and transmembrane domains that mediate pentameric assembly. Those efforts have largely ignored the most diverse domain of these channels, the intracellular domain (ICD). Here we identify molecular determinants within the ICD of serotonin type 3A (5-HT3A) subunits for pentameric assembly by first identifying the segments contributing to pentamerization using deletion constructs of, and finally by making defined amino acid substitutions within, an isolated soluble ICD. Our work provides direct experimental evidence for the contribution of three intracellular arginines, previously implicated in governing the low conductance of 5-HT3ARs, in structural features such as pentameric assembly.

SUBMITTER: Pandhare A 

PROVIDER: S-EPMC6719409 | biostudies-literature | 2019 Sep

REPOSITORIES: biostudies-literature

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Triple arginines as molecular determinants for pentameric assembly of the intracellular domain of 5-HT<sub>3A</sub> receptors.

Pandhare Akash A   Pirayesh Elham E   Stuebler Antonia G AG   Jansen Michaela M  

The Journal of general physiology 20190813 9


Serotonin type 3 receptors (5-HT<sub>3</sub>Rs) are cation-conducting pentameric ligand-gated ion channels and members of the Cys-loop superfamily in eukaryotes. 5-HT<sub>3</sub>Rs are found in the peripheral and central nervous system, and they are targets for drugs used to treat anxiety, drug dependence, and schizophrenia, as well as chemotherapy-induced and postoperative nausea and emesis. Decades of research of Cys-loop receptors have identified motifs in both the extracellular and transmemb  ...[more]

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