Protein mobility and GABA-induced conformational changes in GABA(A) receptor pore-lining M2 segment

Citation
J. Horenstein et al., Protein mobility and GABA-induced conformational changes in GABA(A) receptor pore-lining M2 segment, NAT NEUROSC, 4(5), 2001, pp. 477-485
Citations number
37
Categorie Soggetti
Neurosciences & Behavoir
Journal title
NATURE NEUROSCIENCE
ISSN journal
10976256 → ACNP
Volume
4
Issue
5
Year of publication
2001
Pages
477 - 485
Database
ISI
SICI code
1097-6256(200105)4:5<477:PMAGCC>2.0.ZU;2-4
Abstract
Protein movements underlying ligand-gated ion channel activation are poorly understood. Here we used disulfide bond trapping to examine the proximity and mobility of cysteines substituted for aligned GABA(A) receptor alpha (1 ) and beta (1) M2 segment channel-lining residues in resting and activated receptors. With or without GABA, disulfide bonds formed at alpha (1)N275C/b eta (1)E270C (20') and alpha (1)S272C/beta (1)H267C (17'), near the extrace llular end, suggesting that this end is more mobile and/or flexible than th e rest of the segment. Near the middle of M2, at alpha (1)T261C/beta (1)T25 6C (6'), a disulfide bond formed only in the presence of GABA and locked th e channels open. Channel activation must involve an asymmetric rotation of two adjacent subunits toward each other. This would move aligned engineered cysteines on different subunits into proximity and allow disulfide bond fo rmation without blocking conduction. Asymmetric rotation of M2 segments is probably a common gating mechanism in other ligand-gated ion channels.