| Literature DB >> 25674472 |
Hui Li1, Hui-Chuan Wu1, Zhonghua Liu2, Lucia F Zacchi3, Jeffrey L Brodsky3, Michal Zolkiewski1.
Abstract
A single GAG codon deletion in the gene encoding torsinA is linked to most cases of early-onset torsion dystonia. TorsinA is an ER-localized membrane-associated ATPase from the AAA+ superfamily with an unknown biological function. We investigated the formation of oligomeric complexes of torsinA in cultured mammalian cells and found that wild type torsinA associates into a complex with a molecular weight consistent with that of a homohexamer. Interestingly, the dystonia-linked variant torsinAΔE displayed a reduced propensity to form the oligomers compared to the wild type protein. We also discovered that the deletion of the N-terminal membrane-associating region of torsinA abolished oligomer formation. Our results demonstrate that the dystonia-linked mutation in the torsinA gene produces a protein variant that is deficient in maintaining its oligomeric state and suggest that ER membrane association is required to stabilize the torsinA complex.Entities:
Keywords: AAA+ ATPase; Early-onset dystonia, TorsinA; Protein association
Year: 2014 PMID: 25674472 PMCID: PMC4320221 DOI: 10.1186/2193-1801-3-743
Source DB: PubMed Journal: Springerplus ISSN: 2193-1801
Figure 1BN-PAGE analysis of torsinA complexes. Full-length human torsinA (WT) or the dystonia-linked torsinAΔE protein (ΔE) was expressed in HEK293 (A) and CHO (B) cells. Production of the torsinA variants was confirmed by SDS-PAGE followed by immunoblotting with anti-torsinA antibodies (lower panels) using untransfected cells as a control (C). The cell lysates were separated on BN-PAGE followed by immunoblotting (upper panels). For BN-PAGE, the migration positions of the native-electrophoresis standards are indicated. The migration position of β-amylase (200 kDa) is indicated with an arrow. Protein migration in BN-PAGE can reflect other biophysical properties, besides the molecular weight, so the molecular weight determination is only approximate. The figure shows a representative result from two independent experiments.
Figure 2Oligomerization of the N-terminally truncated torsinA variants. (A) Far-UV circular dichroism spectra of purified torsinAΔ40 (1 mg/ml, solid line) and the dialysis buffer (dotted line) are shown. (B) Gel-filtration analysis of torsinAΔ40 in the absence of nucleotides or in the presence of 2 mM ATP or ADP is shown. The elution times of molecular weight standards (kDa) are indicated. (C) BN-PAGE (upper panel) and SDS-PAGE (lower panel) analysis was followed by immunoblotting with anti-torsinA antibodies of lysates from HEK293 and CHO cells expressing either full-length torsinA (WT), torsinAΔ40 (Δ40), torsinAΔ40ΔE (Δ40ΔE) or untransfected cells (C). For BN-PAGE, the migration positions of the native-electrophoresis standards are indicated. The migration position of β-amylase (200 kDa) is indicated with an arrow. Protein migration in BN-PAGE can reflect other biophysical properties, besides the molecular weight, so the molecular weight determination is only approximate. The figure shows a representative result from two independent experiments.