Role of negatively charged amino acids in β4 F-loop in activation and desensitization of α3β4 rat neuronal nicotinic receptors

The role of negatively charged amino acids in the F-loop of the β4 subunit in channel activation and desensitization was studied using the patch-clamp technique. The selected amino acids were changed to their neutral analogs via point mutations. Whole-cell currents were recorded in COS cells transie...

Full description

Saved in:
Bibliographic Details
Published inBiochimica et biophysica acta. Biomembranes Vol. 1778; no. 4; pp. 864 - 871
Main Authors Lindovský, Jiří, Kaniaková, Martina, Svobodová, Lucie, Vyskočil, František, Krůšek, Jan
Format Journal Article
LanguageEnglish
Published Elsevier B.V 01.04.2008
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:The role of negatively charged amino acids in the F-loop of the β4 subunit in channel activation and desensitization was studied using the patch-clamp technique. The selected amino acids were changed to their neutral analogs via point mutations. Whole-cell currents were recorded in COS cells transiently transfected with the α3β4 nicotinic acetylcholine receptor. The application of acetylcholine (ACh), nicotine (Nic), cytisine (Cyt), carbamylcholine (CCh) and epibatidine (Epi) to cells clamped at − 40 mV produced inward currents which displayed biphasic desensitization. The EC 50 of Epi and Nic were increased by a factor of 3–6 due to mutations D191N or D192N. Only Epi remained an agonist in the double-mutated receptors with EC 50 increased 17-fold. The interaction of the receptors with the competitive antagonist (+)tubocurarine (TC) was weakened almost 3-fold in the double-mutated receptors. The mutations increased the proportion of the slower desensitization component and increased the response plateau, resulting in decreased receptor desensitization. The double mutation substantially accelerated the return from long-term desensitization induced by Epi.
ISSN:0005-2736
1879-2642
DOI:10.1016/j.bbamem.2008.01.010