Importance of the C-terminus of the human 5-HT3A receptor subunit

Amongst the family members of Cys-loop LGICs, the atypical ability of the 5-HT3A subunit to form functional homomeric receptors allowed a direct investigation of the role of the C-terminus. Deletion of the three C-terminal amino acids (ΔGln453-ΔTyr454-ΔAla455) from the h5-HT3A subunit prevented form...

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Veröffentlicht in:Neuropharmacology 2009-01, Vol.56 (1), p.292-302
Hauptverfasser: Butler, Amy S., Lindesay, Sarah A., Dover, Terri J., Kennedy, Matthew D., Patchell, Valerie B., Levine, Barry A., Hope, Anthony G., Barnes, Nicholas M.
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Sprache:eng
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Zusammenfassung:Amongst the family members of Cys-loop LGICs, the atypical ability of the 5-HT3A subunit to form functional homomeric receptors allowed a direct investigation of the role of the C-terminus. Deletion of the three C-terminal amino acids (ΔGln453-ΔTyr454-ΔAla455) from the h5-HT3A subunit prevented formation of a specific radioligand binding site as well as expression within the cell membrane. Removal of merely the C-terminal residue (ΔAla455) reduced specific radioligand binding (to 4±1% relative to the wild-type; cells grown at 37°C) and also cell membrane expression; these reductions were less evident when the ΔAla455 expressing cells were grown at 27°C (specific radioligand binding levels 27±5% relative to wild-type also grown at 27°C). Mutation of the h5-HT3A C-terminal amino acid, alanine, for either glycine (Ala455Gly), valine (Ala455Val) or leucine (Ala455Leu) reduced specific radioligand binding levels by 24±23%, 32±12% and 88±1%, respectively; the latter mutant also displaying reduced membrane expression. In contrast, mutation to alanine of the two amino acids preceding the C-terminal alanine (Gln453Ala and Tyr454Ala) had no detrimental effects on specific radioligand binding or cell membrane expression levels. The present study demonstrates an important role for the C-terminus in the formation of the functional h5-HT3A receptor. The partial restoration of 5-HT3 receptor binding and cell membrane expression when cells expressing C-terminal mutant 5-HT3A subunits were grown at a lower temperature (27°C) suggests that the C-terminus stabilises the 5-HT3 receptor allowing subunit folding and subsequent maturation.
ISSN:0028-3908
1873-7064
DOI:10.1016/j.neuropharm.2008.08.017