4.6 Article

Mutagenic Analysis of the Intracellular Portals of the Human 5-HT3A Receptor

Journal

JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 288, Issue 44, Pages 31592-31601

Publisher

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M113.503300

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Funding

  1. Wellcome Trust
  2. Tenovus Scotland
  3. Anonymous Trust
  4. Biotechnology and Biological Sciences Research Council
  5. Lilly
  6. National Science Foundation

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Structural models of Cys-loop receptors based on homology with the Torpedo marmorata nicotinic acetylcholine receptor infer the existence of cytoplasmic portals within the conduction pathway framed by helical amphipathic regions (termed membrane-associated (MA) helices) of adjacent intracellular M3-M4 loops. Consistent with these models, two arginine residues (Arg(436) and Arg(440)) within the MA helix of 5-hydroxytryptamine type 3A (5-HT(3)A) receptors act singularly as rate-limiting determinants of single-channel conductance (gamma). However, there is little conservation in primary amino acid sequences across the cytoplasmic loops of Cys-loop receptors, limiting confidence in the fidelity of this particular aspect of the 5-HT(3)A receptor model. We probed the majority of residues within the MA helix of the human 5-HT(3)A subunit using alanine-and arginine-scanning mutagenesis and the substituted cysteine accessibility method to determine their relative influences upon gamma. Numerous residues, prominently those at the 435, 436, 439, and 440 positions, were found to markedly influence gamma. This approach yielded a functional map of the 5-HT(3)A receptor portals, which agrees well with the homology model.

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