Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Mutational analysis of muscle nicotinic acetylcholine receptor subunit assembly.

View through CrossRef
The structural elements required for normal maturation and assembly of the nicotinic acetylcholine receptor alpha subunit were investigated by expression of mutated subunits in transfected fibroblasts. Normally, the wild-type alpha subunit acquires high affinity alpha bungarotoxin binding in a time-dependent manner; however, mutation of the 128 and/or 142 cysteines to either serine or alanine, as well as deletion of the entire 14 amino acids in this region abolished all detectable high affinity binding. Nonglycosylated subunits that had a serine to glycine mutation in the consensus sequence also did not efficiently attain high affinity binding to toxin. In contrast, mutation of the proline at position 136 to glycine or alanine, or a double mutation of the cysteines at position 192 and 193 to serines had no effect on the acquisition of high affinity toxin binding. These data suggest that a disulfide bridge between cysteines 128 and 142 and oligosaccharide addition at asparagine 141 are required for the normal maturation of alpha subunit as assayed by high affinity toxin binding. The unassembled wild-type alpha subunit expressed in fibroblasts is normally degraded with a t1/2 of 2 h; upon assembly with the delta subunit, the degradation rate slows significantly (t1/2 greater than 13 h). All mutated alpha subunits retained the capacity to assemble with a delta subunit coexpressed in fibroblasts; however, mutated alpha subunits that were not glycosylated or did not acquire high affinity toxin binding were rapidly degraded (t1/2 = 20 min to 2 h) regardless of whether or not they assembled with the delta subunit. Assembly and rapid degradation of nonglycosylated acetylcholine receptor (AChR) subunits and subunit complexes were also observed in tunicamycin-treated BC3H-1 cells, a mouse musclelike cell line that normally expresses functional AChR. Hence, rapid degradation may be one form of regulation assuring that only correctly processed and assembled subunits accumulate, and ultimately make functional receptors in AChR-expressing cells.
Title: Mutational analysis of muscle nicotinic acetylcholine receptor subunit assembly.
Description:
The structural elements required for normal maturation and assembly of the nicotinic acetylcholine receptor alpha subunit were investigated by expression of mutated subunits in transfected fibroblasts.
Normally, the wild-type alpha subunit acquires high affinity alpha bungarotoxin binding in a time-dependent manner; however, mutation of the 128 and/or 142 cysteines to either serine or alanine, as well as deletion of the entire 14 amino acids in this region abolished all detectable high affinity binding.
Nonglycosylated subunits that had a serine to glycine mutation in the consensus sequence also did not efficiently attain high affinity binding to toxin.
In contrast, mutation of the proline at position 136 to glycine or alanine, or a double mutation of the cysteines at position 192 and 193 to serines had no effect on the acquisition of high affinity toxin binding.
These data suggest that a disulfide bridge between cysteines 128 and 142 and oligosaccharide addition at asparagine 141 are required for the normal maturation of alpha subunit as assayed by high affinity toxin binding.
The unassembled wild-type alpha subunit expressed in fibroblasts is normally degraded with a t1/2 of 2 h; upon assembly with the delta subunit, the degradation rate slows significantly (t1/2 greater than 13 h).
All mutated alpha subunits retained the capacity to assemble with a delta subunit coexpressed in fibroblasts; however, mutated alpha subunits that were not glycosylated or did not acquire high affinity toxin binding were rapidly degraded (t1/2 = 20 min to 2 h) regardless of whether or not they assembled with the delta subunit.
Assembly and rapid degradation of nonglycosylated acetylcholine receptor (AChR) subunits and subunit complexes were also observed in tunicamycin-treated BC3H-1 cells, a mouse musclelike cell line that normally expresses functional AChR.
Hence, rapid degradation may be one form of regulation assuring that only correctly processed and assembled subunits accumulate, and ultimately make functional receptors in AChR-expressing cells.

Related Results

Poster 247: Muscle ERRγ Overexpression Mitigates the Muscle Atrophy after ACL injury
Poster 247: Muscle ERRγ Overexpression Mitigates the Muscle Atrophy after ACL injury
Objectives: Anterior cruciate ligament (ACL) reconstruction is the 6th most common orthopedic procedure performed in the United States (1,2). There is substanti...
Neuronal nicotinic α-bungarotoxin sites
Neuronal nicotinic α-bungarotoxin sites
At the vertebrate neuromuscular junction and in the electroplax of eel and electric fish, the nicotinic α-bungarotoxin site and the nicotinic receptor involved in synaptic transmis...
Mutations in Insulin-Receptor Gene in Insulin-Resistant Patients
Mutations in Insulin-Receptor Gene in Insulin-Resistant Patients
Defects in insulin-receptor function have been associated with insulin-resistant states such as obesity and non-insulin-dependent diabetes mellitus (NIDDM). Several types of mutati...
Membrane Clustering and Bungarotoxin Binding by the Nicotinic Acetylcholine Receptor: Role of the β Subunit
Membrane Clustering and Bungarotoxin Binding by the Nicotinic Acetylcholine Receptor: Role of the β Subunit
Abstract: Nicotinic acetylcholine receptors (nAChRs) are localised at morphologically distinct regions of the postsynaptic membrane by interactions between the receptor subunits an...
5. All That glitters is not gold
5. All That glitters is not gold
Abstract Introduction Inflammatory muscle disease is a rare but well-recognised manifestation of systemic vasculitis. It can pre...
Nicotinic Acetylcholine Receptors
Nicotinic Acetylcholine Receptors
Abstract Nicotinic receptors are cation‐permeable ion channels activated by the neurotransmitter acetylcholine. The muscle‐type receptor mediates all fast sy...
The effect of coniine on presynaptic nicotinic receptors
The effect of coniine on presynaptic nicotinic receptors
AbstractToxicity of coniine, an alkaloid ofConium maculatum(poison hemlock), is manifested by characteristic nicotinic clinical signs including excitement, depression, hypermetria,...

Back to Top