» Articles » PMID: 7619526

Mutation of the Acetylcholine Receptor Alpha Subunit Causes a Slow-channel Myasthenic Syndrome by Enhancing Agonist Binding Affinity

Overview
Journal Neuron
Publisher Cell Press
Specialty Neurology
Date 1995 Jul 1
PMID 7619526
Citations 85
Authors
Affiliations
Soon will be listed here.
Abstract

In five members of a family and another unrelated person affected by a slow-channel congenital myasthenic syndrome (SCCMS), molecular genetic analysis of acetylcholine receptor (AChR) subunit genes revealed a heterozygous G to A mutation at nucleotide 457 of the alpha subunit, converting codon 153 from glycine to serine (alpha G153S). Electrophysiologic analysis of SCCMS end plates revealed prolonged decay of miniature end plate currents and prolonged activation episodes of single AChR channels. Engineered mutant AChR expressed in HEK fibroblasts exhibited prolonged activation episodes strikingly similar to those observed at the SCCMS end plates. Single-channel kinetic analysis of engineered alpha G153S AChR revealed a markedly decreased rate of ACh dissociation, which causes the mutant AChR to open repeatedly during ACh occupancy. In addition, ACh binding measurements combined with the kinetic analysis indicated increased desensitization of the mutant AChR. Thus, ACh binding affinity can dictate the time course of the synaptic response, and alpha G153 contributes to the low binding affinity for ACh needed to speed the decay of the synaptic response.

Citing Articles

Innovative Therapeutic Approaches in Congenital Myasthenic Syndromes.

Kediha M, Tazir M, Sternberg D, Eymard B, Ali Pacha L Neurol Clin Pract. 2024; 14(3):e200277.

PMID: 38737513 PMC: 11081764. DOI: 10.1212/CPJ.0000000000200277.


Clinical and genetic characterisation of a large Indian congenital myasthenic syndrome cohort.

Polavarapu K, Sunitha B, Topf A, Preethish-Kumar V, Thompson R, Vengalil S Brain. 2023; 147(1):281-296.

PMID: 37721175 PMC: 10766255. DOI: 10.1093/brain/awad315.


Impaired gating of γ- and ε-AChR respectively causes Escobar syndrome and fast-channel myasthenia.

Shen X, Nakata T, Mizuno S, Imoto I, Selcen D, Ohno K Ann Clin Transl Neurol. 2023; 10(5):732-743.

PMID: 36891870 PMC: 10187723. DOI: 10.1002/acn3.51756.


Clinical and Pathologic Features of Congenital Myasthenic Syndromes Caused by 35 Genes-A Comprehensive Review.

Ohno K, Ohkawara B, Shen X, Selcen D, Engel A Int J Mol Sci. 2023; 24(4).

PMID: 36835142 PMC: 9961056. DOI: 10.3390/ijms24043730.


Point Mutations of Nicotinic Receptor α1 Subunit Reveal New Molecular Features of G153S Slow-Channel Myasthenia.

Kudryavtsev D, Isaeva A, Barkova D, Spirova E, Mukhutdinova R, Kasheverov I Molecules. 2021; 26(5).

PMID: 33652901 PMC: 7956382. DOI: 10.3390/molecules26051278.