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Delineating the site of interaction on the intracellular domain of 5-HT3A receptors with the chaperone protein RIC-3

Pirayesh, E.; Stuebler, A. G.; Jansen, M.

2019-07-02 biophysics
10.1101/689596 bioRxiv
Show abstract

The serotonin type 3A (5-HT3A) receptor is a homopentameric cation-selective member of the pentameric ligand-gated ion channel (pLGIC) superfamily. Members of this superfamily assemble from five subunits, each of which consists of three domains, extracellular (ECD), transmembrane (TMD), and intracellular domain (ICD). Previously, we have also demonstrated that 5-HT3A-ICD is required and sufficient for the interaction between 5-HT3A and RIC-3. Additionally, we have shown that 5-HT3A-ICD fused to maltose binding protein (MBP) directly interacts with the chaperone protein resistance to inhibitors of choline esterase (RIC-3), without the involvement of other protein(s). To elucidate the molecular determinants of this interaction we developed different MBP-fused 5-HT3A-ICD constructs by deletion of large portions of its amino acid sequence. We have expressed seven mutants in Escherichia coli and purified them to homogeneity. Using a RIC-3 affinity pull-down assay, the interaction of MBP-5HT3A-ICD constructs and RIC-3 is investigated. Furthermore, we co-expressed 5-HT3A and 5-HT3AB, a heteromeric form of 5-HT3Rs, with RIC-3 in Xenopus oocytes to compare their interaction with RIC-3 in-vivo by two electrode voltage clamp (TEVC) recordings. Full-length 5-HT3A-and 5-HT3AB mediated currents are significantly reduced when RIC-3 is co-expressed in either condition. In summary, we identify a 24-amino acid long segment of the 5-HT3A-ICD as a molecular determinant for the interaction between the 5-HT3A-ICD and RIC-3.\n\nStatement of SignificanceThe chaperone protein RIC-3 is known to modulate the functional surface expression of cation-conducting pentameric ligand-gated ion channels. Previously we have demonstrated that the intracellular domain of serotonin channels mediates this effect. Here we provide experimental evidence for a 24-amino acid long segment within the 115-amino acid long intracellular domain as a determinant for RIC-3 interaction. Recently it was found experimentally that the identified segment contains an alpha helix that has been observed or predicted to be present in other cation-conducting channels. The present work provides novel insights into protein-protein interactions that are likely also relevant for other cation-conducting members of this large ion channel family that includes nACh and 5-HT3 receptors.

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