Molecular determinants of ginkgolide binding in the glycine receptor pore


Autoria(s): Hawthorne, R.; Cromer, B. A.; Ng, H. L.; Parker, M. W.; Lynch, J. W.
Contribuinte(s)

A. J. Turner

B. Collier

Data(s)

01/01/2006

Resumo

Ginkgolides are potent blockers of the glycine receptor Cl- channel (GlyR) pore. We sought to identify their binding sites by comparing the effects of ginkgolides A, B and C and bilobalide on alpha 1, alpha 2, alpha 1 beta and alpha 2 beta GlyRs. Bilobalide sensitivity was drastically reduced by incorporation of the beta subunit. In contrast, the sensitivities to ginkgolides B and C were enhanced by beta subunit expression. However, ginkgolide A sensitivity was increased in the alpha 2 beta GlyR relative to the alpha 2 GlyR but not in the alpha 1 beta GlyR relative to the alpha 1 GlyR. We hypothesised that the subunit-specific differences were mediated by residue differences at the second transmembrane domain 2' and 6' pore-lining positions. The increased ginkgolide A sensitivity of the alpha 2 beta GlyR was transferred to the alpha 1 beta GlyR by the G2'A (alpha 1 to alpha 2 subunit) substitution. In addition, the alpha 1 subunit T6'F mutation abolished inhibition by all ginkgolides. As the ginkgolides share closely related structures, their molecular interactions with pore-lining residues were amenable to mutant cycle analysis. This identified an interaction between the variable R2 position of the ginkgolides and the 2' residues of both alpha 1 and beta subunits. These findings provide strong evidence for ginkgolides binding at the 2' pore-lining position.

Identificador

http://espace.library.uq.edu.au/view/UQ:80382

Idioma(s)

eng

Publicador

Blackwell Publishing

Palavras-Chave #Channel Block #Neurosciences #Electrophysiology #Ginkgo Biloba #Ligand-gated Ion Channel #Mutant Cycle Analysis #Patch Clamp #Gated Chloride Channel #Beta-subunit #Gaba(a) Receptors #Biloba Extract #Mutant Cycles #Mouse Retina #M2-m3 Loop #Open State #Picrotoxin #Antagonist #Biochemistry & Molecular Biology #C1 #270601 Animal Physiology - Biophysics #730104 Nervous system and disorders
Tipo

Journal Article