Mutant torsinA interferes with protein processing through the secretory pathway in DYT1 dystonia cells

被引:106
作者
Hewett, Jeffrey W.
Tannous, Bakhos
Niland, Brian P.
Nery, Flavia C.
Zeng, Juan
Li, Yuqing
Breakefield, Xandra O.
机构
[1] Massachusetts Gen Hosp, Dept Neurol, Boston, MA 02114 USA
[2] Massachusetts Gen Hosp, Dept Radiol, Ctr Mol Imaging Res, Boston, MA 02114 USA
[3] Harvard Univ, Sch Med, Program Neurosci, Boston, MA 02114 USA
[4] Univ Alabama Birmingham, Dept Neurol, Birmingham, AL 35294 USA
[5] Univ Alabama Birmingham, Ctr Neurodegenerat & Expt Therapeut, Birmingham, AL 35294 USA
关键词
early onset dystonia; endoplasmic reticulum; luciferase; protein translation;
D O I
10.1073/pnas.0701185104
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
TorsinA is an AAA(+) protein located predominantly in the lumen of the endoplasmic reticulum (ER) and nuclear envelope responsible for early onset torsion dystonia (DYT1). Most cases of this dominantly inherited movement disorder are caused by deletion of a glutamic acid in the carboxyl terminal region of torsinA. We used a sensitive reporter, Gaussia luciferase (Gluc) to evaluate the role of torsinA in processing proteins through the ER. In primary fibroblasts from controls and DYT1 patients most Gluc activity (95%) was released into the media and processed through the secretory pathway, as confirmed by inhibition with brefeldinA and nococlazole. Fusion of Gluc to a fluorescent protein revealed coalignment and fractionation with ER proteins and association of Gluc with torsinA. Notably, fibroblasts from DYT1 patients were found to secrete markedly less Gluc activity as compared with control fibroblasts. This decrease in processing of Gluc in DYT1 cells appear to arise, at least in part, from a loss of torsinA activity, because mouse embryonic fibroblasts lacking torsinA also had reduced secretion as compared with control cells. These studies demonstrate the exquisite sensitivity of this reporter system for quantitation of processing through the secretory pathway and support a role for torsinA as an ER chaperone protein.
引用
收藏
页码:7271 / 7276
页数:6
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